Observation List
Get a list of Observation objects.
GET /api/v3/observations/?format=api&offset=5000
{ "count": 10256, "next": "https://api.catalogue.ceda.ac.uk/api/v3/observations/?format=api&limit=100&offset=5100", "previous": "https://api.catalogue.ceda.ac.uk/api/v3/observations/?format=api&limit=100&offset=4900", "results": [ { "ob_id": 24375, "uuid": "85119583d35e40548a8dd456f5f3e68b", "title": "SAFIRE-FA20 FS18 EUFAR RAIN4DUST Flight, 2011-06-16: in situ atmospheric measurements", "abstract": "In situ atmospheric measurements using the SAFIRE Falcon20 Core Instrument suite onboard the FA20 - SAFIRE aircraft for the RAIN4DUST - Contribution of flash floods to the variability of dust emission in the Sahara project (flight reference: fs18).\n\nData were collected over the Central Saharan mountains, Chad area.\n", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2012-08-07T14:50:08", "updateFrequency": "notPlanned", "dataLineage": "Data were collected by instrument scientists during the flight before preparation and delivery for archiving at the Centre for Environmental Data Analysis (CEDA).", "removedDataReason": "", "keywords": "RAIN4DUST, EUFAR, aircraft, atmospheric", "publicationState": "citable", "nonGeographicFlag": false, "dontHarvestFromProjects": false, "language": "English", "resolution": "", "status": "completed", "dataPublishedTime": "2015-11-20T14:18:24.419052", "doiPublishedTime": "2018-01-17T09:49:29.070574", "removedDataTime": null, "geographicExtent": { "ob_id": 1734, "bboxName": "", "eastBoundLongitude": -9.181401252746582, "westBoundLongitude": -13.873250961303711, "southBoundLatitude": 25.10146713256836, "northBoundLatitude": 28.52141571044922 }, "verticalExtent": null, "result_field": { "ob_id": 24374, "dataPath": "/badc/eufar/data/projects/rain4dust/safire-fa20_fs18_20110616_rain4dust", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 1217565, "numberOfFiles": 3, "fileFormat": "Data are netCDF and ENVI Binary formatted. Ancillary files may be plain ASCII or PDF formatted. Image files may be PNG or JPG formatted." }, "timePeriod": { "ob_id": 6623, "startTime": "2011-06-16T07:37:02", "endTime": "2011-06-16T11:25:17" }, "resultQuality": { "ob_id": 3075, "explanation": "The data are quality controlled by the Climatic Research Unit (CRU) at the University of East Anglia. 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The aims were:\r\n1.High-resolution characterisation of dust sources in the foothills of the Saharan Mountains using air-borne observations of emission in progress.\r\n2.Identification of significant rainfall and flash flood events in selected source areas using space-born ground radar and rain radar data. \r\n3.Assessment of the importance of the associated pluvial sediment supply for variations in dust source activity on time scales from weeks to years.\r\n4.Use these results to aid the discussion of the long-standing problem of interannual variability of dustiness and the representation of soil processes in numerical dust models.\r\n\r\n" } ], "inspireTheme": [], "topicCategory": [], "phenomena": [ 52314, 52315, 56150, 56151, 56152, 56153, 56154, 56156, 56157, 56158, 56159, 56160, 56161, 63576, 87807, 87808, 87809, 87810, 87811, 87812 ], "vocabularyKeywords": [], "identifier_set": [ 9430 ], "observationcollection_set": [ { "ob_id": 6382, "uuid": "d40e4067ae0121b31bb1ba57e04707de", "short_code": "coll", "title": "EUFAR: Airborne in-situ atmospheric and hyperspectral data collection from funded flight campaigns", "abstract": "European Facility for Airborne Research in Environmental and Geo-sciences 2 (EUFAR 2) is an Integrating Activity of the 7th Framework Program of the European Commission following three previous contracts under FP5, FP6 and FP7, bringing together 24 European institutions and organisations involved in airborne research, operating 18 instrumented aircraft and providing access to 3 hyperspectral instruments.\r\n\r\nTo facilitate wide access and to maximise the potential of the valuable scientific data collected during the EUFAR FP7 projects (2008-2018), data are available through a single archive at BADC. The data itself is stored either in an accessible online archive operated by the aircraft operator (eg NERC-ARSF, FAAM-BAE-146) or lodged in the BADC EUFAR archive.\r\n\r\nData include measurements by airborne in situ atmospheric instuments and hyperspectral instruments operated on board the aircraft of the EUFAR fleet during projects funded under the transnational access part of EUFAR and during training events. The data available will vary from aircraft to aircraft depending on the instruments on board and the aims and flight patterns for each project.\r\n\r\nDuring the first FP7 project (EUFAR 2008-2013) thirteen aircraft and one additional instrument (APEX) were involved in 43 projects including a collaboration of data from volcanic ash flights following the eruption of the Icelandic volcano, Eyjafjallajokull, in April 2010. These projects are A-NEW, ACEMED, ADDRESSS, AEGEAN-GAME, AIMWETLAB, AIRES-CZM, ALISA, ARMSRACE, BIOHYPE, BLLATE1, BLLATE2, DeInVader, DeMinTIR, DRAMAC, EDOCROS, Eyjafjallajokull, GEOMAD, HABlakes, HYMEDECOS-Erosion, HyMedEcos-Gradients, HyMountEcos, HYMOWEB, HyperForest, HYPERSTRESS, i-WAKE2, ICARE-QAD, ICELAND_DEBRISFLOWS, IMROM, LADUNEX, MORE, RAIN4DUST, REFLEX, SEDMEDHY, SONATA, SRMGlaciers, SVALBD_PGLACIAL2, T-MAPP-FP7, TETRAD, UR-TIR, ValCalHyp, VESSAER, WaLiTemp. All expected data from these flight have now been archived.\r\n\r\nEUFAR2 (2014-2018) is collecting data for these projects: AHSPECT, DEHESHYRE, HIDHAZ_N_ICELAND, HILBILLY, HOLUHRAUN_HAZ, HYMOSENS2, HYPPOS, ISOTHERM, MEDHY2CON, SAVEX, SWAMP, URBSENSE. More will be added as they become available." }, { "ob_id": 24371, "uuid": "e731614223bf470aa8510e64f2562ce1", "short_code": "coll", "title": "RAIN4DUST: in-situ airborne observations by the FA20 - SAFIRE aircraft aircraft", "abstract": "In-situ airborne observations by the FA20 - SAFIRE aircraft aircraft for RAIN4DUST - Contribution of flash floods to the variability of dust emission in the Sahara ." } ], "responsiblepartyinfo_set": [ 99829, 99831, 99832, 99833, 99834, 99828, 106262, 99835, 106263, 105974, 106264 ], "onlineresource_set": [ 23051, 23052 ] }, { "ob_id": 24379, "uuid": "1f55f8266847470585d1ad934e3ba849", "title": "SAFIRE-FA20 FS26 EUFAR RAIN4DUST Flight, 2011-06-23: in situ atmospheric measurements", "abstract": "In situ atmospheric measurements using the SAFIRE Falcon20 Core Instrument suite onboard the FA20 - SAFIRE aircraft for the RAIN4DUST - Contribution of flash floods to the variability of dust emission in the Sahara project (flight reference: fs26).\r\n\r\nData were collected over the Central Saharan mountains, Chad area.\r\n", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2012-08-07T14:50:27", "updateFrequency": "notPlanned", "dataLineage": "Data were collected by instrument scientists during the flight before preparation and delivery for archiving at the Centre for Environmental Data Analysis (CEDA).", "removedDataReason": "", "keywords": "RAIN4DUST, EUFAR, aircraft, atmospheric", "publicationState": "citable", "nonGeographicFlag": false, "dontHarvestFromProjects": false, "language": "English", "resolution": "", "status": "completed", "dataPublishedTime": "2015-11-20T14:18:43", "doiPublishedTime": "2018-01-17T10:51:00", "removedDataTime": null, "geographicExtent": { "ob_id": 1735, "bboxName": "", "eastBoundLongitude": -9.163143157958984, "westBoundLongitude": -13.875604629516602, "southBoundLatitude": 25.075658798217773, "northBoundLatitude": 28.57680892944336 }, "verticalExtent": null, "result_field": { "ob_id": 24378, "dataPath": "/badc/eufar/data/projects/rain4dust/safire-fa20_fs26_20110623_rain4dust", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 1156317, "numberOfFiles": 3, "fileFormat": "Data are netCDF and ENVI Binary formatted. Ancillary files may be plain ASCII or PDF formatted. Image files may be PNG or JPG formatted." }, "timePeriod": { "ob_id": 6624, "startTime": "2011-06-23T07:25:08", "endTime": "2011-06-23T11:01:47" }, "resultQuality": { "ob_id": 3075, "explanation": "The data are quality controlled by the Climatic Research Unit (CRU) at the University of East Anglia. Details are given in the paper Harries et al. 2014 and the release notes, links to both can be found in the documentation.", "passesTest": true, "resultTitle": "CEDA Data Quality Statement", "date": "2017-02-14" }, "validTimePeriod": null, "procedureAcquisition": { "ob_id": 24376, "uuid": "ccd1cf714d164dc6a4131da9de318148", "short_code": "acq", "title": "SAFIRE-FA20 FS26 EUFAR RAIN4DUST Flight, 2011-06-23: data acquisition details", "abstract": "SAFIRE-FA20 FS26 EUFAR RAIN4DUST Flight, 2011-06-23 data acquisition details." }, "procedureComputation": null, "procedureCompositeProcess": null, "imageDetails": [ 97 ], "discoveryKeywords": [ { "ob_id": 1138, "name": "NDGO0003" } ], "permissions": [ { "ob_id": 2528, "accessConstraints": null, "accessCategory": "public", "accessRoles": null, "label": "public: None group", "licence": { "ob_id": 8, "licenceURL": "http://creativecommons.org/licenses/by/4.0/", "licenceClassifications": [ { "ob_id": 3, "classification": "any" } ] } } ], "projects": [ { "ob_id": 19946, "uuid": "33b7b89495b04899a11e4c1faa402124", "short_code": "proj", "title": "RAIN4DUST - Contribution of flash floods to the variability of dust emission in the Sahara", "abstract": "This EUFAR project was an Investigation of active dust sources located within the mountain foothills over the Sahara. The aims were:\r\n1.High-resolution characterisation of dust sources in the foothills of the Saharan Mountains using air-borne observations of emission in progress.\r\n2.Identification of significant rainfall and flash flood events in selected source areas using space-born ground radar and rain radar data. \r\n3.Assessment of the importance of the associated pluvial sediment supply for variations in dust source activity on time scales from weeks to years.\r\n4.Use these results to aid the discussion of the long-standing problem of interannual variability of dustiness and the representation of soil processes in numerical dust models.\r\n\r\n" } ], "inspireTheme": [], "topicCategory": [], "phenomena": [ 50416, 52314, 52315, 56150, 56151, 56152, 56153, 56154, 56155, 56156, 56157, 56158, 56159, 56160, 56161, 56162 ], "vocabularyKeywords": [], "identifier_set": [ 9431 ], "observationcollection_set": [ { "ob_id": 6382, "uuid": "d40e4067ae0121b31bb1ba57e04707de", "short_code": "coll", "title": "EUFAR: Airborne in-situ atmospheric and hyperspectral data collection from funded flight campaigns", "abstract": "European Facility for Airborne Research in Environmental and Geo-sciences 2 (EUFAR 2) is an Integrating Activity of the 7th Framework Program of the European Commission following three previous contracts under FP5, FP6 and FP7, bringing together 24 European institutions and organisations involved in airborne research, operating 18 instrumented aircraft and providing access to 3 hyperspectral instruments.\r\n\r\nTo facilitate wide access and to maximise the potential of the valuable scientific data collected during the EUFAR FP7 projects (2008-2018), data are available through a single archive at BADC. The data itself is stored either in an accessible online archive operated by the aircraft operator (eg NERC-ARSF, FAAM-BAE-146) or lodged in the BADC EUFAR archive.\r\n\r\nData include measurements by airborne in situ atmospheric instuments and hyperspectral instruments operated on board the aircraft of the EUFAR fleet during projects funded under the transnational access part of EUFAR and during training events. The data available will vary from aircraft to aircraft depending on the instruments on board and the aims and flight patterns for each project.\r\n\r\nDuring the first FP7 project (EUFAR 2008-2013) thirteen aircraft and one additional instrument (APEX) were involved in 43 projects including a collaboration of data from volcanic ash flights following the eruption of the Icelandic volcano, Eyjafjallajokull, in April 2010. These projects are A-NEW, ACEMED, ADDRESSS, AEGEAN-GAME, AIMWETLAB, AIRES-CZM, ALISA, ARMSRACE, BIOHYPE, BLLATE1, BLLATE2, DeInVader, DeMinTIR, DRAMAC, EDOCROS, Eyjafjallajokull, GEOMAD, HABlakes, HYMEDECOS-Erosion, HyMedEcos-Gradients, HyMountEcos, HYMOWEB, HyperForest, HYPERSTRESS, i-WAKE2, ICARE-QAD, ICELAND_DEBRISFLOWS, IMROM, LADUNEX, MORE, RAIN4DUST, REFLEX, SEDMEDHY, SONATA, SRMGlaciers, SVALBD_PGLACIAL2, T-MAPP-FP7, TETRAD, UR-TIR, ValCalHyp, VESSAER, WaLiTemp. All expected data from these flight have now been archived.\r\n\r\nEUFAR2 (2014-2018) is collecting data for these projects: AHSPECT, DEHESHYRE, HIDHAZ_N_ICELAND, HILBILLY, HOLUHRAUN_HAZ, HYMOSENS2, HYPPOS, ISOTHERM, MEDHY2CON, SAVEX, SWAMP, URBSENSE. More will be added as they become available." }, { "ob_id": 24371, "uuid": "e731614223bf470aa8510e64f2562ce1", "short_code": "coll", "title": "RAIN4DUST: in-situ airborne observations by the FA20 - SAFIRE aircraft aircraft", "abstract": "In-situ airborne observations by the FA20 - SAFIRE aircraft aircraft for RAIN4DUST - Contribution of flash floods to the variability of dust emission in the Sahara ." } ], "responsiblepartyinfo_set": [ 99840, 99841, 99843, 99844, 99845, 99846, 106299, 99847, 105984, 106300, 106301 ], "onlineresource_set": [ 23053, 23054, 94920 ] }, { "ob_id": 24383, "uuid": "8edd26f597de4f168c6d92b95e19aecb", "title": "INTACASA-RS EUFAR UR-TIR Flight, 2011-07-05: hyperspectral remote sensing measurements", "abstract": "Hyperspectral remote sensing measurements using the INTA Airborne Hyperspectral Scanner and INTA Compact Airborne Spectrographic Imager 1500i instruments onboard the CASA 212 RS - INTA aircraft for the UR-TIR- Urban mapping with airborne thermal infra red imagery project (flight reference: intacasa-rs_20110705_urtir).\r\n\r\nData were collected over the Munich and Bochum, Germany area.", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2019-12-07T19:01:45", "updateFrequency": "notPlanned", "dataLineage": "Data were collected by instrument scientists during the flight before preparation and delivery for archiving at the Centre for Environmental Data Analysis (CEDA).", "removedDataReason": "", "keywords": "UR-TIR, EUFAR, aircraft, hyperspectral, remote sensing", "publicationState": "citable", "nonGeographicFlag": false, "dontHarvestFromProjects": false, "language": "English", "resolution": "", "status": "completed", "dataPublishedTime": "2015-07-31T15:05:48", "doiPublishedTime": "2018-01-17T10:51:00", "removedDataTime": null, "geographicExtent": { "ob_id": 1917, "bboxName": "", "eastBoundLongitude": 7.24548494346, "westBoundLongitude": 7.22957624473, "southBoundLatitude": 51.5655905461, "northBoundLatitude": 51.3364885175 }, "verticalExtent": null, "result_field": { "ob_id": 24382, "dataPath": "/badc/eufar/data/projects/ur-tir/intacasa-rs_20110705_urtir", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 78734566904, "numberOfFiles": 380, "fileFormat": "Data are netCDF and ENVI Binary formatted. Ancillary files may be plain ASCII or PDF formatted. Image files may be PNG or JPG formatted." }, "timePeriod": { "ob_id": 6625, "startTime": "2011-07-05T10:10:00", "endTime": "2011-07-05T10:19:00" }, "resultQuality": { "ob_id": 3075, "explanation": "The data are quality controlled by the Climatic Research Unit (CRU) at the University of East Anglia. Details are given in the paper Harries et al. 2014 and the release notes, links to both can be found in the documentation.", "passesTest": true, "resultTitle": "CEDA Data Quality Statement", "date": "2017-02-14" }, "validTimePeriod": null, "procedureAcquisition": { "ob_id": 24380, "uuid": "eca8b82567ec4e148a812645061c88f0", "short_code": "acq", "title": "INTACASA-RS EUFAR UR-TIR Flight, 2011-07-05: data acquisition details", "abstract": "INTACASA-RS EUFAR UR-TIR Flight, 2011-07-05 data acquisition details." }, "procedureComputation": null, "procedureCompositeProcess": null, "imageDetails": [ 97 ], "discoveryKeywords": [ { "ob_id": 1138, "name": "NDGO0003" } ], "permissions": [ { "ob_id": 2528, "accessConstraints": null, "accessCategory": "public", "accessRoles": null, "label": "public: None group", "licence": { "ob_id": 8, "licenceURL": "http://creativecommons.org/licenses/by/4.0/", "licenceClassifications": [ { "ob_id": 3, "classification": "any" } ] } } ], "projects": [ { "ob_id": 19939, "uuid": "a55fb32991b14395a752f9a5479e2c5d", "short_code": "proj", "title": "UR-TIR- Urban mapping with airborne thermal infra red imagery", "abstract": "The overall aim of the project is to explore the potential of airborne thermal imagery for the mapping of urban characteristics. Airborne hyperspectral remote sensing is considered very suitable for urban remote sensing. Its high spatial and spectral resolution enables the mapping of the heterogeneous urban landscape with its small objects and large variety of surface covers. However, still difficulties exist in the correct identification of surface materials with similar spectral characteristics in the reflective range of the spectrum. For example bitumen on roofs and asphalt streets have similar spectral signatures. But for many applications it is important to separate between buildings (roofs) and streets. It is expected that thermal spectral information (e.g. emissivity spectra) will improve the separation of spectrally similar materials on different urban objects. Next to emissivity, also the thermal patterns (land surface temperature, LST) measured with a thermal sensor can be used as an additional information layer. LST plays an important role in the urban energy balance and is therefore an important parameter for the assessment of urban climate but also for questions related to energy and sustainable urban development. Answering the question how the emissivity spectra and the land surface temperature can be used to derive meaningful products for urban climate, energy and sustainable development analysis is the topic of this proposed project.\r\n\r\nIn detail the following four objectives are formulated for the proposed project: \r\n1.Gaining knowledge on the thermal spectral signatures of urban surface materials by the combined analysis of field and hyperspectral image spectra in the thermal range of the spectrum.\r\n2.Identify products to support micro climate, energy and sustainable development studies which can be derived with the thermal image data \r\n3.Develop methods to retrieve these products using thermal and hyperspectral data analysis methods.\r\n4.Analysis of dependencies between urban surface temperatures and urban morphology parameters and verify these on a second hyperspectral data set.\r\n\r\n" } ], "inspireTheme": [], "topicCategory": [], "phenomena": [], "vocabularyKeywords": [], "identifier_set": [ 9444 ], "observationcollection_set": [ { "ob_id": 6382, "uuid": "d40e4067ae0121b31bb1ba57e04707de", "short_code": "coll", "title": "EUFAR: Airborne in-situ atmospheric and hyperspectral data collection from funded flight campaigns", "abstract": "European Facility for Airborne Research in Environmental and Geo-sciences 2 (EUFAR 2) is an Integrating Activity of the 7th Framework Program of the European Commission following three previous contracts under FP5, FP6 and FP7, bringing together 24 European institutions and organisations involved in airborne research, operating 18 instrumented aircraft and providing access to 3 hyperspectral instruments.\r\n\r\nTo facilitate wide access and to maximise the potential of the valuable scientific data collected during the EUFAR FP7 projects (2008-2018), data are available through a single archive at BADC. The data itself is stored either in an accessible online archive operated by the aircraft operator (eg NERC-ARSF, FAAM-BAE-146) or lodged in the BADC EUFAR archive.\r\n\r\nData include measurements by airborne in situ atmospheric instuments and hyperspectral instruments operated on board the aircraft of the EUFAR fleet during projects funded under the transnational access part of EUFAR and during training events. The data available will vary from aircraft to aircraft depending on the instruments on board and the aims and flight patterns for each project.\r\n\r\nDuring the first FP7 project (EUFAR 2008-2013) thirteen aircraft and one additional instrument (APEX) were involved in 43 projects including a collaboration of data from volcanic ash flights following the eruption of the Icelandic volcano, Eyjafjallajokull, in April 2010. These projects are A-NEW, ACEMED, ADDRESSS, AEGEAN-GAME, AIMWETLAB, AIRES-CZM, ALISA, ARMSRACE, BIOHYPE, BLLATE1, BLLATE2, DeInVader, DeMinTIR, DRAMAC, EDOCROS, Eyjafjallajokull, GEOMAD, HABlakes, HYMEDECOS-Erosion, HyMedEcos-Gradients, HyMountEcos, HYMOWEB, HyperForest, HYPERSTRESS, i-WAKE2, ICARE-QAD, ICELAND_DEBRISFLOWS, IMROM, LADUNEX, MORE, RAIN4DUST, REFLEX, SEDMEDHY, SONATA, SRMGlaciers, SVALBD_PGLACIAL2, T-MAPP-FP7, TETRAD, UR-TIR, ValCalHyp, VESSAER, WaLiTemp. All expected data from these flight have now been archived.\r\n\r\nEUFAR2 (2014-2018) is collecting data for these projects: AHSPECT, DEHESHYRE, HIDHAZ_N_ICELAND, HILBILLY, HOLUHRAUN_HAZ, HYMOSENS2, HYPPOS, ISOTHERM, MEDHY2CON, SAVEX, SWAMP, URBSENSE. More will be added as they become available." }, { "ob_id": 24384, "uuid": "9e8d1f472c454ceca12b59577d95049a", "short_code": "coll", "title": "UR-TIR: in-situ airborne observations by the CASA 212 RS - INTA aircraft aircraft", "abstract": "In-situ airborne observations by the CASA 212 RS - INTA aircraft aircraft for UR-TIR- Urban mapping with airborne thermal infra red imagery ." } ], "responsiblepartyinfo_set": [ 99852, 99853, 99856, 99857, 99858, 99859, 106327, 99860, 105992, 106328, 106329 ], "onlineresource_set": [ 23055, 23056, 89545, 89546, 89547, 89548, 89549, 87574 ] }, { "ob_id": 24388, "uuid": "744a336cacbf480dbc679be7de11a9e7", "title": "INTACASA-RS EUFAR UR-TIR Flight, 2011-07-12: hyperspectral remote sensing measurements", "abstract": "Hyperspectral remote sensing measurements using the INTA Airborne Hyperspectral Scanner and INTA Compact Airborne Spectrographic Imager 1500i instruments onboard the CASA 212 RS - INTA aircraft for the UR-TIR- Urban mapping with airborne thermal infra red imagery project (flight reference: intacasa-rs_20110712_urtir).\r\n\r\nData were collected over the Munich and Bochum, Germany area.", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2020-05-04T04:44:18", "updateFrequency": "notPlanned", "dataLineage": "Data were collected by instrument scientists during the flight before preparation and delivery for archiving at the Centre for Environmental Data Analysis (CEDA).", "removedDataReason": "", "keywords": "UR-TIR, EUFAR, aircraft, hyperspectral, remote sensing", "publicationState": "citable", "nonGeographicFlag": false, "dontHarvestFromProjects": false, "language": "English", "resolution": "", "status": "completed", "dataPublishedTime": "2015-07-31T15:05:58", "doiPublishedTime": "2018-01-17T10:51:00", "removedDataTime": null, "geographicExtent": { "ob_id": 1918, "bboxName": "", "eastBoundLongitude": 7.24548494346, "westBoundLongitude": 7.22957624473, "southBoundLatitude": 51.5655905461, "northBoundLatitude": 51.3364885175 }, "verticalExtent": null, "result_field": { "ob_id": 24387, "dataPath": "/badc/eufar/data/projects/ur-tir/intacasa-rs_20110712_urtir", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 96035866950, "numberOfFiles": 498, "fileFormat": "Data are netCDF and ENVI Binary formatted. 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Border of the Czech Republic and Poland area.\n\n\nThe APEX (Airborne Prism EXperiment) instrument is an imaging spectrometer developed by a Swiss-Belgian consortium on behalf of ESA. It is operated jointly by VITO (Belgium) and RSL (Switzerland). Please see the link to the APEX website from this record for further details.", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2019-12-07T19:02:42", "updateFrequency": "notPlanned", "dataLineage": "Data were collected by instrument scientists during the flight before preparation and delivery for archiving at the Centre for Environmental Data Analysis (CEDA).", "removedDataReason": "", "keywords": "HYMOUNTECOS, EUFAR, aircraft, hyperspectral, remote sensing", "publicationState": "citable", "nonGeographicFlag": false, "dontHarvestFromProjects": false, "language": "English", "resolution": "", "status": "completed", "dataPublishedTime": "2017-01-25T16:18:14.355740", "doiPublishedTime": "2018-01-17T09:39:19.224103", "removedDataTime": null, "geographicExtent": { "ob_id": 1925, "bboxName": "", "eastBoundLongitude": 15.51500462, "westBoundLongitude": 15.51400462, "southBoundLatitude": 50.8210551, "northBoundLatitude": 50.8200551 }, "verticalExtent": null, "result_field": { "ob_id": 24417, "dataPath": "/badc/eufar/data/projects/hymountecos/apex_dlr-dornier_20120910_hymountecos_hymeb", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 189042825949, "numberOfFiles": 185, "fileFormat": "Data are netCDF and ENVI Binary formatted. 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To capture the richness of the area nature and to have the possibility to analyse the diversity of the Giant Mountains nature we propose to acquire airborne hyperspectral data on the altitudinal gradient from the submontane, through the montane and subalpine until the alpine belt for the both Polish and Czech parts of the national park that also enables tree foliage ground truth and spectral to compare the ecosystems on the both Polish and Czech sides and possibly to assess also some influence of management practice. The main goals of the project are mountain ecosystems mapping and inventarization, an analyses and evaluation of forest ecosystems conditions/health, an analyses of ecosystems species composition and invasive species introduction and an analysis of soil contamination. Hyperspectral airborne and satellite data (Hyperion) comparison will be provided to evaluate both data types suitability for the research goals, their potential and limitations will be pointed out. Particular results will contribute to the comprehensive assessment of the hyperspectral technologies potential for mountain ecosystems monitoring." } ], "inspireTheme": [], "topicCategory": [], "phenomena": [], "vocabularyKeywords": [], "identifier_set": [ 9407 ], "observationcollection_set": [ { "ob_id": 6382, "uuid": "d40e4067ae0121b31bb1ba57e04707de", "short_code": "coll", "title": "EUFAR: Airborne in-situ atmospheric and hyperspectral data collection from funded flight campaigns", "abstract": "European Facility for Airborne Research in Environmental and Geo-sciences 2 (EUFAR 2) is an Integrating Activity of the 7th Framework Program of the European Commission following three previous contracts under FP5, FP6 and FP7, bringing together 24 European institutions and organisations involved in airborne research, operating 18 instrumented aircraft and providing access to 3 hyperspectral instruments.\r\n\r\nTo facilitate wide access and to maximise the potential of the valuable scientific data collected during the EUFAR FP7 projects (2008-2018), data are available through a single archive at BADC. The data itself is stored either in an accessible online archive operated by the aircraft operator (eg NERC-ARSF, FAAM-BAE-146) or lodged in the BADC EUFAR archive.\r\n\r\nData include measurements by airborne in situ atmospheric instuments and hyperspectral instruments operated on board the aircraft of the EUFAR fleet during projects funded under the transnational access part of EUFAR and during training events. The data available will vary from aircraft to aircraft depending on the instruments on board and the aims and flight patterns for each project.\r\n\r\nDuring the first FP7 project (EUFAR 2008-2013) thirteen aircraft and one additional instrument (APEX) were involved in 43 projects including a collaboration of data from volcanic ash flights following the eruption of the Icelandic volcano, Eyjafjallajokull, in April 2010. These projects are A-NEW, ACEMED, ADDRESSS, AEGEAN-GAME, AIMWETLAB, AIRES-CZM, ALISA, ARMSRACE, BIOHYPE, BLLATE1, BLLATE2, DeInVader, DeMinTIR, DRAMAC, EDOCROS, Eyjafjallajokull, GEOMAD, HABlakes, HYMEDECOS-Erosion, HyMedEcos-Gradients, HyMountEcos, HYMOWEB, HyperForest, HYPERSTRESS, i-WAKE2, ICARE-QAD, ICELAND_DEBRISFLOWS, IMROM, LADUNEX, MORE, RAIN4DUST, REFLEX, SEDMEDHY, SONATA, SRMGlaciers, SVALBD_PGLACIAL2, T-MAPP-FP7, TETRAD, UR-TIR, ValCalHyp, VESSAER, WaLiTemp. All expected data from these flight have now been archived.\r\n\r\nEUFAR2 (2014-2018) is collecting data for these projects: AHSPECT, DEHESHYRE, HIDHAZ_N_ICELAND, HILBILLY, HOLUHRAUN_HAZ, HYMOSENS2, HYPPOS, ISOTHERM, MEDHY2CON, SAVEX, SWAMP, URBSENSE. More will be added as they become available." }, { "ob_id": 24406, "uuid": "5cc1d6587533461fbfaf7d9fcc5ce86c", "short_code": "coll", "title": "HYMOUNTECOS: in-situ airborne observations by the DO228-212 /D-CFFU - DLR aircraft aircraft", "abstract": "In-situ airborne observations by the DO228-212 /D-CFFU - DLR aircraft aircraft for HyMountEcos- Hyperspectral Remote Sensing for Mountain Ecosystems (HYMOUNTECOS)." } ], "responsiblepartyinfo_set": [ 99983, 99984, 99988, 99989, 99990, 99991, 106338, 99992, 105995, 106339, 106340, 106341 ], "onlineresource_set": [ 23076, 23074, 23075, 94951, 94952, 94953 ] }, { "ob_id": 24422, "uuid": "f8476979b7ff4c178701325053aa1cb2", "title": "KIT-ENDURO EUFAR VESSAER Flight, 2012-06-30: in situ atmospheric measurements", "abstract": "In situ atmospheric measurements using the KIT Enduro core instruments onboard the ENDURO - KIT aircraft for the VESSAER - VErtical Structure and Sources of AERosols in the Mediterranean Region project (flight reference: 20120630).\n\nData were collected over the Corsica, France area.\n", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2017-11-09T13:33:47", "updateFrequency": "notPlanned", "dataLineage": "Data were collected by instrument scientists during the flight before preparation and delivery for archiving at the Centre for Environmental Data Analysis (CEDA).", "removedDataReason": "", "keywords": "VESSAER, EUFAR, aircraft, atmospheric", "publicationState": "citable", "nonGeographicFlag": false, "dontHarvestFromProjects": false, "language": "English", "resolution": "", "status": "completed", "dataPublishedTime": "2017-02-06T15:54:33.605141", "doiPublishedTime": "2018-01-17T09:58:51.578629", "removedDataTime": null, "geographicExtent": { "ob_id": 1926, "bboxName": "", "eastBoundLongitude": 9.558603286743164, "westBoundLongitude": 9.376871109008789, "southBoundLatitude": 42.04043197631836, "northBoundLatitude": 42.31043243408203 }, "verticalExtent": null, "result_field": { "ob_id": 24421, "dataPath": "/badc/eufar/data/projects/vessaer/kit-enduro_20120630_vessaer", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 5401378, "numberOfFiles": 5, "fileFormat": "Data are netCDF and ENVI Binary formatted. 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Ground-based observations do not provide the full picture as in-situ measurements in the vertical dimensions are lacking. In addition, active and passive remote sensing instrumentation, such as lidars and AERONET/PHOTON sun photometers, need in-situ measurements of aerosol properties to expand their measurements to larger domains.\r\n\r\nThis experiment complements existing ChArMEx and HyMeX activities supported by the MISTRALS program, which are the target of many European research institutes in 2012 and 2013 (ChArMEx: http://charmex.lsce.ipsl.fr/ and HyMeX: http://www.hymex.org/) \r\n\r\nThe project used airborne measurements together with ground station observations at Ersa (on Cape Corsica) and aerosol lidar measurements (south of Bastia) with the following scientific goals:\r\n\r\n- Investigation of local vs long-range sources of aerosols and CCN (marine, anthropogenic and African dust) and their vertical stratification in the lower troposphere,\r\n\r\n- Use of aerosol hygroscopicity as a function of altitude to study evolution and ageing due to atmospheric processing in the boundary layer,\r\n\r\n- Coupled in-situ airborne measurements with ground-based lidar to determine aerosol direct radiative impacts over a larger spatial scale.\r\n\r\n- Use of ozone as tracer of long-range transport of polluted air masses form the continent." } ], "inspireTheme": [], "topicCategory": [], "phenomena": [ 56074, 56075, 56076, 56077, 56078, 56079, 56080, 56081, 56083, 56084, 56085, 56086, 56087, 56088, 56089, 56090, 56091, 56092, 56093, 56094, 56095, 56096, 56097, 56098, 56099, 56100, 56101, 56102, 56103, 56104, 56105, 56106, 56107, 56108, 56109, 56110, 56111, 56112, 56113, 56114, 56115, 56116, 56117, 56118, 56119, 56120, 56121, 56122, 56123, 56124, 56125, 56126, 56127, 56128, 56129, 56130, 56131, 56132, 56133, 56134, 56135, 56136, 56137, 56138, 56139, 56140, 56141, 56142, 56143, 56144, 56145, 56146, 56147, 56148, 56149, 56163 ], "vocabularyKeywords": [], "identifier_set": [ 9454 ], "observationcollection_set": [ { "ob_id": 6382, "uuid": "d40e4067ae0121b31bb1ba57e04707de", "short_code": "coll", "title": "EUFAR: Airborne in-situ atmospheric and hyperspectral data collection from funded flight campaigns", "abstract": "European Facility for Airborne Research in Environmental and Geo-sciences 2 (EUFAR 2) is an Integrating Activity of the 7th Framework Program of the European Commission following three previous contracts under FP5, FP6 and FP7, bringing together 24 European institutions and organisations involved in airborne research, operating 18 instrumented aircraft and providing access to 3 hyperspectral instruments.\r\n\r\nTo facilitate wide access and to maximise the potential of the valuable scientific data collected during the EUFAR FP7 projects (2008-2018), data are available through a single archive at BADC. The data itself is stored either in an accessible online archive operated by the aircraft operator (eg NERC-ARSF, FAAM-BAE-146) or lodged in the BADC EUFAR archive.\r\n\r\nData include measurements by airborne in situ atmospheric instuments and hyperspectral instruments operated on board the aircraft of the EUFAR fleet during projects funded under the transnational access part of EUFAR and during training events. The data available will vary from aircraft to aircraft depending on the instruments on board and the aims and flight patterns for each project.\r\n\r\nDuring the first FP7 project (EUFAR 2008-2013) thirteen aircraft and one additional instrument (APEX) were involved in 43 projects including a collaboration of data from volcanic ash flights following the eruption of the Icelandic volcano, Eyjafjallajokull, in April 2010. These projects are A-NEW, ACEMED, ADDRESSS, AEGEAN-GAME, AIMWETLAB, AIRES-CZM, ALISA, ARMSRACE, BIOHYPE, BLLATE1, BLLATE2, DeInVader, DeMinTIR, DRAMAC, EDOCROS, Eyjafjallajokull, GEOMAD, HABlakes, HYMEDECOS-Erosion, HyMedEcos-Gradients, HyMountEcos, HYMOWEB, HyperForest, HYPERSTRESS, i-WAKE2, ICARE-QAD, ICELAND_DEBRISFLOWS, IMROM, LADUNEX, MORE, RAIN4DUST, REFLEX, SEDMEDHY, SONATA, SRMGlaciers, SVALBD_PGLACIAL2, T-MAPP-FP7, TETRAD, UR-TIR, ValCalHyp, VESSAER, WaLiTemp. All expected data from these flight have now been archived.\r\n\r\nEUFAR2 (2014-2018) is collecting data for these projects: AHSPECT, DEHESHYRE, HIDHAZ_N_ICELAND, HILBILLY, HOLUHRAUN_HAZ, HYMOSENS2, HYPPOS, ISOTHERM, MEDHY2CON, SAVEX, SWAMP, URBSENSE. 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In particular, two airborne imaging DOAS systems were operated, namely the AirMAP from Uni. Bremen and SWING from BIRA, respectively from the FUB Cessna and from a flying wing UAV (Uni. Galati-Reev River Aerospace). These instruments revealed the NO2 horizontal distributions in the exhaust plume of large power plants near Craiova. The AirMAP/Cessna could also be operated above Bucharest and map the whole city. These two geophysical targets (Bucharest and the power plant) are visible in satellite data (OMI) but present different characteristics: the former is a large extended source with moderate NO2 columns (about 1x1016 molec/cm2), the latter produces very dense and localized plume (about 1x1017 molec/cm2). All airborne instruments were operated successfully during AROMAT, nevertheless, several lessons were learned that called for a follow-up and improved experiment. In particular, it appears scientifically interesting to add a second airborne imager from a manned aircraft. This would increase the possibility of measuring satellite overpasses, which were limited in the two weeks of AROMAT-1 due to weather conditions and technical issues. \r\nThe objective of this EUFAR project is to include the APEX instrument in this AROMAT-2 campaign, which is supported by ESA. APEX is mounted onboard the DLR Do228 aircraft. It will be set in unbinned spectral mode, to map the tropospheric NO2 columns above the same targets as AROMAT-1. The possibility to measure NO2 from APEX has already been demonstrated over Zurich [4]. Moreover, BIRA and VITO, part of the AROMAPEX consortium, are involved in a national project to perform similar APEX measurements over the large Belgian cities. \r\nThe objectives of the AROMAPEX experiment consists in :\r\n(1)\tOperating APEX and AirMAP in formation above the same area in a reasonably short time interval. 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" } ], "inspireTheme": [], "topicCategory": [], "phenomena": [], "vocabularyKeywords": [], "identifier_set": [ 9377 ], "observationcollection_set": [ { "ob_id": 6382, "uuid": "d40e4067ae0121b31bb1ba57e04707de", "short_code": "coll", "title": "EUFAR: Airborne in-situ atmospheric and hyperspectral data collection from funded flight campaigns", "abstract": "European Facility for Airborne Research in Environmental and Geo-sciences 2 (EUFAR 2) is an Integrating Activity of the 7th Framework Program of the European Commission following three previous contracts under FP5, FP6 and FP7, bringing together 24 European institutions and organisations involved in airborne research, operating 18 instrumented aircraft and providing access to 3 hyperspectral instruments.\r\n\r\nTo facilitate wide access and to maximise the potential of the valuable scientific data collected during the EUFAR FP7 projects (2008-2018), data are available through a single archive at BADC. 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The focus would be twofold: 1) Aquatic compartment: mapping of mesohabitats (in-stream hydromorphological units: riffles, pools, glides...) and their physical characteristics (e.g.: water depth, velocity, presence of vegetation...); 2) Riparian compartment: ecological condition of the riparian vegetation (e.g.: physical drivers assessment, species detection as potential indicators of dryness, vegetation height and growing rate, vertical structure characterization)." } ], "inspireTheme": [], "topicCategory": [], "phenomena": [], "vocabularyKeywords": [], "identifier_set": [], "observationcollection_set": [ { "ob_id": 24621, "uuid": "81607c4e67f7497483b9aa872e21da4b", "short_code": "coll", "title": "EUFAR15_68: in-situ airborne observations by the NERC ARSF Dornier Do228-101 D-CALM Aircraft aircraft", "abstract": "In-situ airborne observations by the NERC ARSF Dornier Do228-101 D-CALM Aircraft aircraft for HYMOSENS2: rivers HYdroMOrphological characterization by high-resolution remote SENSing data (EUFAR15_68)." }, { "ob_id": 6382, "uuid": "d40e4067ae0121b31bb1ba57e04707de", "short_code": "coll", "title": "EUFAR: Airborne in-situ atmospheric and hyperspectral data collection from funded flight campaigns", "abstract": "European Facility for Airborne Research in Environmental and Geo-sciences 2 (EUFAR 2) is an Integrating Activity of the 7th Framework Program of the European Commission following three previous contracts under FP5, FP6 and FP7, bringing together 24 European institutions and organisations involved in airborne research, operating 18 instrumented aircraft and providing access to 3 hyperspectral instruments.\r\n\r\nTo facilitate wide access and to maximise the potential of the valuable scientific data collected during the EUFAR FP7 projects (2008-2018), data are available through a single archive at BADC. The data itself is stored either in an accessible online archive operated by the aircraft operator (eg NERC-ARSF, FAAM-BAE-146) or lodged in the BADC EUFAR archive.\r\n\r\nData include measurements by airborne in situ atmospheric instuments and hyperspectral instruments operated on board the aircraft of the EUFAR fleet during projects funded under the transnational access part of EUFAR and during training events. The data available will vary from aircraft to aircraft depending on the instruments on board and the aims and flight patterns for each project.\r\n\r\nDuring the first FP7 project (EUFAR 2008-2013) thirteen aircraft and one additional instrument (APEX) were involved in 43 projects including a collaboration of data from volcanic ash flights following the eruption of the Icelandic volcano, Eyjafjallajokull, in April 2010. These projects are A-NEW, ACEMED, ADDRESSS, AEGEAN-GAME, AIMWETLAB, AIRES-CZM, ALISA, ARMSRACE, BIOHYPE, BLLATE1, BLLATE2, DeInVader, DeMinTIR, DRAMAC, EDOCROS, Eyjafjallajokull, GEOMAD, HABlakes, HYMEDECOS-Erosion, HyMedEcos-Gradients, HyMountEcos, HYMOWEB, HyperForest, HYPERSTRESS, i-WAKE2, ICARE-QAD, ICELAND_DEBRISFLOWS, IMROM, LADUNEX, MORE, RAIN4DUST, REFLEX, SEDMEDHY, SONATA, SRMGlaciers, SVALBD_PGLACIAL2, T-MAPP-FP7, TETRAD, UR-TIR, ValCalHyp, VESSAER, WaLiTemp. All expected data from these flight have now been archived.\r\n\r\nEUFAR2 (2014-2018) is collecting data for these projects: AHSPECT, DEHESHYRE, HIDHAZ_N_ICELAND, HILBILLY, HOLUHRAUN_HAZ, HYMOSENS2, HYPPOS, ISOTHERM, MEDHY2CON, SAVEX, SWAMP, URBSENSE. 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The focus would be twofold: 1) Aquatic compartment: mapping of mesohabitats (in-stream hydromorphological units: riffles, pools, glides...) and their physical characteristics (e.g.: water depth, velocity, presence of vegetation...); 2) Riparian compartment: ecological condition of the riparian vegetation (e.g.: physical drivers assessment, species detection as potential indicators of dryness, vegetation height and growing rate, vertical structure characterization)." } ], "inspireTheme": [], "topicCategory": [], "phenomena": [], "vocabularyKeywords": [], "identifier_set": [], "observationcollection_set": [ { "ob_id": 24621, "uuid": "81607c4e67f7497483b9aa872e21da4b", "short_code": "coll", "title": "EUFAR15_68: in-situ airborne observations by the NERC ARSF Dornier Do228-101 D-CALM Aircraft aircraft", "abstract": "In-situ airborne observations by the NERC ARSF Dornier Do228-101 D-CALM Aircraft aircraft for HYMOSENS2: rivers HYdroMOrphological characterization by high-resolution remote SENSing data (EUFAR15_68)." }, { "ob_id": 6382, "uuid": "d40e4067ae0121b31bb1ba57e04707de", "short_code": "coll", "title": "EUFAR: Airborne in-situ atmospheric and hyperspectral data collection from funded flight campaigns", "abstract": "European Facility for Airborne Research in Environmental and Geo-sciences 2 (EUFAR 2) is an Integrating Activity of the 7th Framework Program of the European Commission following three previous contracts under FP5, FP6 and FP7, bringing together 24 European institutions and organisations involved in airborne research, operating 18 instrumented aircraft and providing access to 3 hyperspectral instruments.\r\n\r\nTo facilitate wide access and to maximise the potential of the valuable scientific data collected during the EUFAR FP7 projects (2008-2018), data are available through a single archive at BADC. 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These projects are A-NEW, ACEMED, ADDRESSS, AEGEAN-GAME, AIMWETLAB, AIRES-CZM, ALISA, ARMSRACE, BIOHYPE, BLLATE1, BLLATE2, DeInVader, DeMinTIR, DRAMAC, EDOCROS, Eyjafjallajokull, GEOMAD, HABlakes, HYMEDECOS-Erosion, HyMedEcos-Gradients, HyMountEcos, HYMOWEB, HyperForest, HYPERSTRESS, i-WAKE2, ICARE-QAD, ICELAND_DEBRISFLOWS, IMROM, LADUNEX, MORE, RAIN4DUST, REFLEX, SEDMEDHY, SONATA, SRMGlaciers, SVALBD_PGLACIAL2, T-MAPP-FP7, TETRAD, UR-TIR, ValCalHyp, VESSAER, WaLiTemp. All expected data from these flight have now been archived.\r\n\r\nEUFAR2 (2014-2018) is collecting data for these projects: AHSPECT, DEHESHYRE, HIDHAZ_N_ICELAND, HILBILLY, HOLUHRAUN_HAZ, HYMOSENS2, HYPPOS, ISOTHERM, MEDHY2CON, SAVEX, SWAMP, URBSENSE. 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The eruption is feeding an increasingly voluminous and complex flow field that has reached 1.4-2 km3 and is now classified as a flood basalt eruption (>1km3 erupted volume). The lava flows are accompanied by abundant sulphur dioxide (SO2) emissions (max around 100,000 tonnes/day). This is the first opportunity in Iceland to analyse in detail all aspects of a large magnitude fissure eruption and unlike ground-based and space-based monitoring, airborne data has not yet been used to its full potential. Our primary aims are: i) To characterise and quantify the topology, growth and emplacement of a large lava flow field extruded onto a flat flood plain to enhance lava flow models ii) to improve lava cooling models in a hazards context and better understand spatial distribution of gas emissions, iii) to identify how the lava emplacement has affected drainage, especially for potentially catastrophic floods caused by the melting of ice by volcanic activity. We propose acquisition of aerial data including hyperspectral thermal infrared (TIR) and shortwave infrared (SWIR) as well as photography and laser altimetry (LiDAR) of the eruption and the lava flow field. This will enable quantification of the lava volume and thickness at desirable accuracy along with characterisation of surface structures and cooling profiles of a volumetrically significant lava flow field in a rift setting. These airborne data will be complemented by ground-based time-series data." } ], "inspireTheme": [], "topicCategory": [], "phenomena": [], "vocabularyKeywords": [], "identifier_set": [], "observationcollection_set": [ { "ob_id": 24630, "uuid": "1c3bc4fb7afe4afaa38e52ceff87712c", "short_code": "coll", "title": "EUFAR15_58: in-situ airborne observations by the NERC ARSF Dornier Do228-101 D-CALM Aircraft aircraft", "abstract": "In-situ airborne observations by the NERC ARSF Dornier Do228-101 D-CALM Aircraft aircraft for HOLUHRAUN_HAZ- Assessing the hazard and testing our understanding of environmental and geophysical responses from emplacement of a large volume lava flow field (EUFAR15_58)." }, { "ob_id": 6382, "uuid": "d40e4067ae0121b31bb1ba57e04707de", "short_code": "coll", "title": "EUFAR: Airborne in-situ atmospheric and hyperspectral data collection from funded flight campaigns", "abstract": "European Facility for Airborne Research in Environmental and Geo-sciences 2 (EUFAR 2) is an Integrating Activity of the 7th Framework Program of the European Commission following three previous contracts under FP5, FP6 and FP7, bringing together 24 European institutions and organisations involved in airborne research, operating 18 instrumented aircraft and providing access to 3 hyperspectral instruments.\r\n\r\nTo facilitate wide access and to maximise the potential of the valuable scientific data collected during the EUFAR FP7 projects (2008-2018), data are available through a single archive at BADC. The data itself is stored either in an accessible online archive operated by the aircraft operator (eg NERC-ARSF, FAAM-BAE-146) or lodged in the BADC EUFAR archive.\r\n\r\nData include measurements by airborne in situ atmospheric instuments and hyperspectral instruments operated on board the aircraft of the EUFAR fleet during projects funded under the transnational access part of EUFAR and during training events. The data available will vary from aircraft to aircraft depending on the instruments on board and the aims and flight patterns for each project.\r\n\r\nDuring the first FP7 project (EUFAR 2008-2013) thirteen aircraft and one additional instrument (APEX) were involved in 43 projects including a collaboration of data from volcanic ash flights following the eruption of the Icelandic volcano, Eyjafjallajokull, in April 2010. These projects are A-NEW, ACEMED, ADDRESSS, AEGEAN-GAME, AIMWETLAB, AIRES-CZM, ALISA, ARMSRACE, BIOHYPE, BLLATE1, BLLATE2, DeInVader, DeMinTIR, DRAMAC, EDOCROS, Eyjafjallajokull, GEOMAD, HABlakes, HYMEDECOS-Erosion, HyMedEcos-Gradients, HyMountEcos, HYMOWEB, HyperForest, HYPERSTRESS, i-WAKE2, ICARE-QAD, ICELAND_DEBRISFLOWS, IMROM, LADUNEX, MORE, RAIN4DUST, REFLEX, SEDMEDHY, SONATA, SRMGlaciers, SVALBD_PGLACIAL2, T-MAPP-FP7, TETRAD, UR-TIR, ValCalHyp, VESSAER, WaLiTemp. All expected data from these flight have now been archived.\r\n\r\nEUFAR2 (2014-2018) is collecting data for these projects: AHSPECT, DEHESHYRE, HIDHAZ_N_ICELAND, HILBILLY, HOLUHRAUN_HAZ, HYMOSENS2, HYPPOS, ISOTHERM, MEDHY2CON, SAVEX, SWAMP, URBSENSE. More will be added as they become available." } ], "responsiblepartyinfo_set": [ 100822, 100823, 100827, 100828, 100829, 100830, 106519, 100831, 106053, 106520, 106521 ], "onlineresource_set": [ 23177, 23178 ] }, { "ob_id": 24634, "uuid": "22eb1240c2224d2aadd97e83859329bb", "title": "ARSF 2015_247a - EUFAR HOLUHRAUN_HAZ/EUFAR15_58 Flight: hyperspectral remote sensing measurements", "abstract": "Hyperspectral remote sensing measurements using the ARSF Rollei Digital Camera, ARSF AsiaFENIX hyperspectral imager and ARSF Optech Airborne Laser Terrain Mapper 3033 LIDAR instruments onboard the NERC ARSF Dornier Do228-101 D-CALM Aircraft for the HOLUHRAUN_HAZ- Assessing the hazard and testing our understanding of environmental and geophysical responses from emplacement of a large volume lava flow field (EUFAR15_58) project (flight reference: 2015_247a).\r\n\r\nData were collected over the Central Iceland area.\r\n", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2020-01-18T01:37:08", "updateFrequency": "notPlanned", "dataLineage": "Data were collected by instrument scientists during the flight before preparation and delivery for archiving at the Centre for Environmental Data Analysis (CEDA).", "removedDataReason": "", "keywords": "EUFAR15_58, HOLUHRAUN_HAZ, aircraft, hyperspectral, remote sensing", "publicationState": "published", "nonGeographicFlag": false, "dontHarvestFromProjects": false, "language": "English", "resolution": "", "status": "completed", "dataPublishedTime": "2017-01-30T17:37:50", "doiPublishedTime": null, "removedDataTime": null, "geographicExtent": { "ob_id": 1978, "bboxName": "", "eastBoundLongitude": -16.54624863535624, "westBoundLongitude": -16.879773923827784, "southBoundLatitude": 64.95928433398713, "northBoundLatitude": 64.89827800531813 }, "verticalExtent": null, "result_field": { "ob_id": 24633, "dataPath": "/neodc/arsf/2015/EUFAR15_58/EUFAR15_58-2015_247a_Holuhraun", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 154820783158, "numberOfFiles": 977, "fileFormat": "Data are netCDF and ENVI Binary formatted. 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The eruption is feeding an increasingly voluminous and complex flow field that has reached 1.4-2 km3 and is now classified as a flood basalt eruption (>1km3 erupted volume). The lava flows are accompanied by abundant sulphur dioxide (SO2) emissions (max around 100,000 tonnes/day). This is the first opportunity in Iceland to analyse in detail all aspects of a large magnitude fissure eruption and unlike ground-based and space-based monitoring, airborne data has not yet been used to its full potential. Our primary aims are: i) To characterise and quantify the topology, growth and emplacement of a large lava flow field extruded onto a flat flood plain to enhance lava flow models ii) to improve lava cooling models in a hazards context and better understand spatial distribution of gas emissions, iii) to identify how the lava emplacement has affected drainage, especially for potentially catastrophic floods caused by the melting of ice by volcanic activity. We propose acquisition of aerial data including hyperspectral thermal infrared (TIR) and shortwave infrared (SWIR) as well as photography and laser altimetry (LiDAR) of the eruption and the lava flow field. This will enable quantification of the lava volume and thickness at desirable accuracy along with characterisation of surface structures and cooling profiles of a volumetrically significant lava flow field in a rift setting. These airborne data will be complemented by ground-based time-series data." } ], "inspireTheme": [], "topicCategory": [], "phenomena": [], "vocabularyKeywords": [], "identifier_set": [], "observationcollection_set": [ { "ob_id": 24630, "uuid": "1c3bc4fb7afe4afaa38e52ceff87712c", "short_code": "coll", "title": "EUFAR15_58: in-situ airborne observations by the NERC ARSF Dornier Do228-101 D-CALM Aircraft aircraft", "abstract": "In-situ airborne observations by the NERC ARSF Dornier Do228-101 D-CALM Aircraft aircraft for HOLUHRAUN_HAZ- Assessing the hazard and testing our understanding of environmental and geophysical responses from emplacement of a large volume lava flow field (EUFAR15_58)." }, { "ob_id": 6382, "uuid": "d40e4067ae0121b31bb1ba57e04707de", "short_code": "coll", "title": "EUFAR: Airborne in-situ atmospheric and hyperspectral data collection from funded flight campaigns", "abstract": "European Facility for Airborne Research in Environmental and Geo-sciences 2 (EUFAR 2) is an Integrating Activity of the 7th Framework Program of the European Commission following three previous contracts under FP5, FP6 and FP7, bringing together 24 European institutions and organisations involved in airborne research, operating 18 instrumented aircraft and providing access to 3 hyperspectral instruments.\r\n\r\nTo facilitate wide access and to maximise the potential of the valuable scientific data collected during the EUFAR FP7 projects (2008-2018), data are available through a single archive at BADC. The data itself is stored either in an accessible online archive operated by the aircraft operator (eg NERC-ARSF, FAAM-BAE-146) or lodged in the BADC EUFAR archive.\r\n\r\nData include measurements by airborne in situ atmospheric instuments and hyperspectral instruments operated on board the aircraft of the EUFAR fleet during projects funded under the transnational access part of EUFAR and during training events. The data available will vary from aircraft to aircraft depending on the instruments on board and the aims and flight patterns for each project.\r\n\r\nDuring the first FP7 project (EUFAR 2008-2013) thirteen aircraft and one additional instrument (APEX) were involved in 43 projects including a collaboration of data from volcanic ash flights following the eruption of the Icelandic volcano, Eyjafjallajokull, in April 2010. These projects are A-NEW, ACEMED, ADDRESSS, AEGEAN-GAME, AIMWETLAB, AIRES-CZM, ALISA, ARMSRACE, BIOHYPE, BLLATE1, BLLATE2, DeInVader, DeMinTIR, DRAMAC, EDOCROS, Eyjafjallajokull, GEOMAD, HABlakes, HYMEDECOS-Erosion, HyMedEcos-Gradients, HyMountEcos, HYMOWEB, HyperForest, HYPERSTRESS, i-WAKE2, ICARE-QAD, ICELAND_DEBRISFLOWS, IMROM, LADUNEX, MORE, RAIN4DUST, REFLEX, SEDMEDHY, SONATA, SRMGlaciers, SVALBD_PGLACIAL2, T-MAPP-FP7, TETRAD, UR-TIR, ValCalHyp, VESSAER, WaLiTemp. All expected data from these flight have now been archived.\r\n\r\nEUFAR2 (2014-2018) is collecting data for these projects: AHSPECT, DEHESHYRE, HIDHAZ_N_ICELAND, HILBILLY, HOLUHRAUN_HAZ, HYMOSENS2, HYPPOS, ISOTHERM, MEDHY2CON, SAVEX, SWAMP, URBSENSE. More will be added as they become available." } ], "responsiblepartyinfo_set": [ 100846, 100847, 100851, 100852, 100853, 100854, 106522, 100855, 106054, 106523, 106524 ], "onlineresource_set": [ 23179, 23180 ] }, { "ob_id": 24638, "uuid": "d4595317e1ea42eea4a1653d989d5173", "title": "ARSF 2015_249 - EUFAR HIDHAZ_N_ICELAND/EUFAR15_48 Flight: hyperspectral remote sensing measurements", "abstract": "Hyperspectral remote sensing measurements using the ARSF Rollei Digital Camera, ARSF AsiaFENIX hyperspectral imager and ARSF Optech Airborne Laser Terrain Mapper 3033 LIDAR instruments onboard the NERC ARSF Dornier Do228-101 D-CALM Aircraft for the HIDHAZ_N_ICELAND- The hidden hazard of melting ground-ice in Northern Iceland (EUFAR15_48) project (flight reference: 2015_249).\r\n\r\nData were collected over the Mafellshyrna, Iceland area.\r\n", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2020-03-19T13:35:21", "updateFrequency": "notPlanned", "dataLineage": "Data were collected by instrument scientists during the flight before preparation and delivery for archiving at the Centre for Environmental Data Analysis (CEDA).", "removedDataReason": "", "keywords": "EUFAR15_48, HIDHAZ_N_ICELAND, aircraft, hyperspectral, remote sensing", "publicationState": "published", "nonGeographicFlag": false, "dontHarvestFromProjects": false, "language": "English", "resolution": "", "status": "completed", "dataPublishedTime": "2017-03-16T09:38:48", "doiPublishedTime": null, "removedDataTime": null, "geographicExtent": null, "verticalExtent": null, "result_field": { "ob_id": 24637, "dataPath": "/neodc/arsf/2015/EUFAR15_48/EUFAR15_48-2015_249_Hidhaz", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 266770597965, "numberOfFiles": 1971, "fileFormat": "Data are netCDF and ENVI Binary formatted. 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However, the melting of shallow ground-ice in mountainous areas with discontinuous permafrost is a hidden hazard: the surfaces concerned look like normal moraine or talus slope materials without more detailed inspection. This hidden hazard has recently been revealed in northern Iceland: ~500,000m3 of debris was mobilised by a catastrophic failure of perched ice-rich sediments on Mafellshyrna Mountain, Iceland in September 2012. A further, smaller slide happened in Ãrnafjall in summer 2014. Fortunately, the runout zones were uninhabited. \r\nThis EUFAR project aims to identify other sites in Iceland where such failures could occur, including inhabited areas. To do this, it is necessary to fully understand the Mafellshyrna slide, of which an essential component is airborne hyperspectral, thermal and LiDAR data. Three other sites with a similar configuration have been identified. The project will use airborne data in order to: (1) test the use of airborne thermal remote sensing for rapid identification of such sites elsewhere, (2) characterise Mafellshyrna's setting to allow comparison to other sites and (3) create an empirical model allowing the assessment of the runout and the volume of flow elsewhere to assess the potential hazard." } ], "inspireTheme": [], "topicCategory": [], "phenomena": [], "vocabularyKeywords": [], "identifier_set": [], "observationcollection_set": [ { "ob_id": 24639, "uuid": "fa5e7e1f29f54581bcc2beedebde3a87", "short_code": "coll", "title": "EUFAR15_48: in-situ airborne observations by the NERC ARSF Dornier Do228-101 D-CALM Aircraft aircraft", "abstract": "In-situ airborne observations by the NERC ARSF Dornier Do228-101 D-CALM Aircraft aircraft for HIDHAZ_N_ICELAND- The hidden hazard of melting ground-ice in Northern Iceland (EUFAR15_48)." }, { "ob_id": 6382, "uuid": "d40e4067ae0121b31bb1ba57e04707de", "short_code": "coll", "title": "EUFAR: Airborne in-situ atmospheric and hyperspectral data collection from funded flight campaigns", "abstract": "European Facility for Airborne Research in Environmental and Geo-sciences 2 (EUFAR 2) is an Integrating Activity of the 7th Framework Program of the European Commission following three previous contracts under FP5, FP6 and FP7, bringing together 24 European institutions and organisations involved in airborne research, operating 18 instrumented aircraft and providing access to 3 hyperspectral instruments.\r\n\r\nTo facilitate wide access and to maximise the potential of the valuable scientific data collected during the EUFAR FP7 projects (2008-2018), data are available through a single archive at BADC. The data itself is stored either in an accessible online archive operated by the aircraft operator (eg NERC-ARSF, FAAM-BAE-146) or lodged in the BADC EUFAR archive.\r\n\r\nData include measurements by airborne in situ atmospheric instuments and hyperspectral instruments operated on board the aircraft of the EUFAR fleet during projects funded under the transnational access part of EUFAR and during training events. The data available will vary from aircraft to aircraft depending on the instruments on board and the aims and flight patterns for each project.\r\n\r\nDuring the first FP7 project (EUFAR 2008-2013) thirteen aircraft and one additional instrument (APEX) were involved in 43 projects including a collaboration of data from volcanic ash flights following the eruption of the Icelandic volcano, Eyjafjallajokull, in April 2010. These projects are A-NEW, ACEMED, ADDRESSS, AEGEAN-GAME, AIMWETLAB, AIRES-CZM, ALISA, ARMSRACE, BIOHYPE, BLLATE1, BLLATE2, DeInVader, DeMinTIR, DRAMAC, EDOCROS, Eyjafjallajokull, GEOMAD, HABlakes, HYMEDECOS-Erosion, HyMedEcos-Gradients, HyMountEcos, HYMOWEB, HyperForest, HYPERSTRESS, i-WAKE2, ICARE-QAD, ICELAND_DEBRISFLOWS, IMROM, LADUNEX, MORE, RAIN4DUST, REFLEX, SEDMEDHY, SONATA, SRMGlaciers, SVALBD_PGLACIAL2, T-MAPP-FP7, TETRAD, UR-TIR, ValCalHyp, VESSAER, WaLiTemp. All expected data from these flight have now been archived.\r\n\r\nEUFAR2 (2014-2018) is collecting data for these projects: AHSPECT, DEHESHYRE, HIDHAZ_N_ICELAND, HILBILLY, HOLUHRAUN_HAZ, HYMOSENS2, HYPPOS, ISOTHERM, MEDHY2CON, SAVEX, SWAMP, URBSENSE. More will be added as they become available." } ], "responsiblepartyinfo_set": [ 100860, 100861, 100865, 100866, 100867, 100868, 106525, 100869, 106526, 106055, 106527 ], "onlineresource_set": [ 23181, 23182 ] }, { "ob_id": 24643, "uuid": "708d98ac4b3d4784bd38521a4993b5b7", "title": "ARSF 2015_169a - EUFAR MEDHY2CON/EUFAR15_38 Flight: hyperspectral remote sensing measurements", "abstract": "Hyperspectral remote sensing measurements using the ARSF AsiaFENIX hyperspectral imager and ARSF Optech Airborne Laser Terrain Mapper 3033 LIDAR instruments onboard the NERC ARSF Dornier Do228-101 D-CALM Aircraft for the MEDhy^2CON- MEDiterranean HYdrological and HYperspectral monitoring of landscape CONnectivity in contrasting Mediterranean insular catchments (Mallorca, Spain) (EUFAR15_38) project (flight reference: 2015_169a).\r\n\r\nData were collected over the Mallorca, Spain area.\r\n", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2018-09-11T16:48:48.846286", "updateFrequency": "notPlanned", "dataLineage": "Data were collected by instrument scientists during the flight before preparation and delivery for archiving at the Centre for Environmental Data Analysis (CEDA).", "removedDataReason": "", "keywords": "EUFAR15_38, MEDHY2CON, aircraft, hyperspectral, remote sensing", "publicationState": "published", "nonGeographicFlag": false, "dontHarvestFromProjects": false, "language": "English", "resolution": "", "status": "completed", "dataPublishedTime": "2017-01-30T17:37:50", "doiPublishedTime": null, "removedDataTime": null, "geographicExtent": { "ob_id": 1970, "bboxName": "", "eastBoundLongitude": 3.011761141184036, "westBoundLongitude": 2.8276020879255603, "southBoundLatitude": 39.82749294818949, "northBoundLatitude": 39.70961446107201 }, "verticalExtent": null, "result_field": { "ob_id": 24642, "dataPath": "/neodc/arsf/2015/EUFAR15_38/EUFAR15_38-2015_169a_Mallorca", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 170991972194, "numberOfFiles": 295, "fileFormat": "Data are netCDF and ENVI Binary formatted. 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Details are given in the paper Harries et al. 2014 and the release notes, links to both can be found in the documentation.", "passesTest": true, "resultTitle": "CEDA Data Quality Statement", "date": "2017-02-14" }, "validTimePeriod": null, "procedureAcquisition": { "ob_id": 24640, "uuid": "fef8a337c2cc49268ae7564b2fe3a251", "short_code": "acq", "title": "ARSF 2015_169a - EUFAR MEDHY2CON/EUFAR15_38 Flight: data acquisition details", "abstract": "ARSF 2015_169a - EUFAR MEDHY2CON/EUFAR15_38 Flight data acquisition details." }, "procedureComputation": null, "procedureCompositeProcess": null, "imageDetails": [ 97 ], "discoveryKeywords": [ { "ob_id": 1138, "name": "NDGO0003" } ], "permissions": [ { "ob_id": 2526, "accessConstraints": null, "accessCategory": "public", "accessRoles": null, "label": "public: None group", "licence": { "ob_id": 3, "licenceURL": "http://www.nationalarchives.gov.uk/doc/open-government-licence/version/3/", "licenceClassifications": [ { "ob_id": 3, "classification": "any" } ] } } ], "projects": [ { "ob_id": 19965, "uuid": "f078138f3a5f4a299a2bb3b6508934dc", "short_code": "proj", "title": "MEDhy^2CON- MEDiterranean HYdrological and HYperspectral monitoring of landscape CONnectivity in contrasting Mediterranean insular catchments (Mallorca, Spain)", "abstract": "The production of high-resolution topographic datasets is of increasing interest and application throughout the geomorphic and ecologic sciences. Due to its high spectral and spatial resolution, airborne hyperspectral remote sensing is considered as a promising technique for assessing some of the required parameters for the spatial modelling approach. The simultaneous acquisition of accurate LiDAR data allows retrieving detailed terrain and vegetation information. The main aim of this EUFAR project is (1) to derive spatial information on vegetation, soil and terrain for ecogeomorphological connectivity model input by combined hyperspectral and LiDAR data, (2) to carry out a spectral fingerprinting approach allowing to trace back sources and pathways of sediments and (3) to calibrate and compare the results of modelling with the values obtained from the spatial distribution of isotopic environmental tracers in soils and vegetation as well as the images obtained from Unmanned Aerial Vehicle (UAV) and aircraft. Thus, airborne data acquisition will be accompanied by an extensive field campaign at ground and also air (Unmanned Aerial Vehicle-UAV) levels in which GIS modelling, sediment-tracer techniques and continuous monitoring of water, sediment and associated contaminant fluxes are being used to build a sediment budget of three catchments representative of Mediterranean environments but with contrasting characteristics." } ], "inspireTheme": [], "topicCategory": [], "phenomena": [], "vocabularyKeywords": [], "identifier_set": [], "observationcollection_set": [ { "ob_id": 24644, "uuid": "375b9ab3f8324cabaa910c94681aa380", "short_code": "coll", "title": "EUFAR15_38: in-situ airborne observations by the NERC ARSF Dornier Do228-101 D-CALM Aircraft aircraft", "abstract": "In-situ airborne observations by the NERC ARSF Dornier Do228-101 D-CALM Aircraft aircraft for MEDhy^2CON- MEDiterranean HYdrological and HYperspectral monitoring of landscape CONnectivity in contrasting Mediterranean insular catchments (Mallorca, Spain) (EUFAR15_38)." }, { "ob_id": 6382, "uuid": "d40e4067ae0121b31bb1ba57e04707de", "short_code": "coll", "title": "EUFAR: Airborne in-situ atmospheric and hyperspectral data collection from funded flight campaigns", "abstract": "European Facility for Airborne Research in Environmental and Geo-sciences 2 (EUFAR 2) is an Integrating Activity of the 7th Framework Program of the European Commission following three previous contracts under FP5, FP6 and FP7, bringing together 24 European institutions and organisations involved in airborne research, operating 18 instrumented aircraft and providing access to 3 hyperspectral instruments.\r\n\r\nTo facilitate wide access and to maximise the potential of the valuable scientific data collected during the EUFAR FP7 projects (2008-2018), data are available through a single archive at BADC. 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It typically depends upon the application for which a product is required, which product is best to use as methods involved in producing them typically have varying strength and weaknesses. \r\n\r\nFor further information on the products, such as details on the SCIAMACHY and TANSO instruments, the algorithms used to generate the data and the data's format, please see the Product Specification Document (PSD) in the documentation section." } ], "responsiblepartyinfo_set": [ 101100, 101101, 101102, 101103, 101104, 101099, 143061, 143062, 101105 ], "onlineresource_set": [ 23242, 23244, 23246, 23240, 23247, 23248, 23249, 23241, 23250, 23239, 23245 ] }, { "ob_id": 24694, "uuid": "5fef473b97cf47f6a5b410f7acf2dbbe", "title": "ESA Antarctic Ice Sheet Climate Change Initiative (Antarctic_Ice_Sheet_cci): Ice velocity time series for Pine Island Glacier, Antarctica, 2014-2016, v1.0", "abstract": "This dataset constists of an ice velocity time series for Pine Island Glacier, Antarctica, derived from Copernicus Sentinel-1 satellite data acquired from 2014 to 2016. It has been produced by the ESA Antarctic Ice Sheet Climate Change Initiative (CCI) project.\r\n\r\nThe data format is 3-layer GeoTiff: the first two layers represent the horizontal displacement component easting and northing respectively in output map coordinates and converted to meters per day [m/d]. The third layer represents the vertical velocity and is derived from the height difference along the displacement vector taken from a Digital Elevation Model (DEM).\r\n\r\nThe method employed to produce this dataset was presented in: Nagler, T., Rott, H., Hetzenecker, M., Wuite, J., Potin, P. (2015). The Sentinel-1 Mission: New Opportunities for Ice Sheet Observations. Remote Sensing, 2015, 7, 9371-9389, doi:10.3390/rs70709371.", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2017-06-05T16:31:46.027196", "updateFrequency": "notPlanned", "dataLineage": "Data were processed by the ESA CCI Antarctic Ice Sheet project team and are archived on the ENVEO Cryoportal (http://cryoportal.enveo.at/data/) They have been supplied to CEDA in the context of the ESA CCI Open Data Portal Project.", "removedDataReason": "", "keywords": "Antarctica, ice sheets, glaciers, ice velocity", "publicationState": "published", "nonGeographicFlag": false, "dontHarvestFromProjects": true, "language": "English", "resolution": "", "status": "superseded", "dataPublishedTime": "2016-04-26T23:00:00", "doiPublishedTime": null, "removedDataTime": null, "geographicExtent": { "ob_id": 1741, "bboxName": "Pine Island Glacier, Antarctica", "eastBoundLongitude": -88.42, "westBoundLongitude": -112.06, "southBoundLatitude": -75.93, "northBoundLatitude": -73.1 }, "verticalExtent": null, "result_field": { "ob_id": 24698, "dataPath": "/neodc/esacci/ice_sheets_antarctica/data/ice_velocity/pine_island_glacier/v1.0/", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 6996438067, "numberOfFiles": 82, "fileFormat": "GeoTIFF" }, "timePeriod": { "ob_id": 6695, "startTime": "2014-10-09T23:00:00", "endTime": "2016-01-21T23:59:59" }, "resultQuality": null, "validTimePeriod": null, "procedureAcquisition": null, "procedureComputation": null, "procedureCompositeProcess": null, "imageDetails": [ 111 ], "discoveryKeywords": [ { "ob_id": 1138, "name": "NDGO0003" } ], "permissions": [ { "ob_id": 2534, "accessConstraints": null, "accessCategory": "public", "accessRoles": null, "label": "public: None group", "licence": { "ob_id": 14, "licenceURL": "https://artefacts.ceda.ac.uk/licences/specific_licences/esacci_icesheets_antarctic_terms_and_conditions.pdf", "licenceClassifications": [ { "ob_id": 3, "classification": "any" } ] } } ], "projects": [ { "ob_id": 24700, "uuid": "fda6ad697b2c49f7882f70f954c44f92", "short_code": "proj", "title": "ESA Antarctic Ice Sheet Climate Change Initiative Project", "abstract": "The European Space Agency (ESA) Antarctic Ice Sheet Climate Change Initiative (Antarctic_Ice_Sheet_cci) project is part of ESA's Climate Change Initiative (CCI) programme to produce long term datasets of Essential Climate Variables (ECV's) derived from global satellite data.\r\n\r\nThe Antarctic Ice Sheet CCI aims to produce long term and reliable climate satellite data records required by the scientific user community. These datasets will improve understanding of present day change on the Antarctic Ice Sheet and provide data for models at a higher spatial and temporal resolution than is currently available, thereby improving estimates of future change. It is focusing on providing datasets of surface elevation changes, ice velocities, gravimetric mass balance and grounding line locations." } ], "inspireTheme": [], "topicCategory": [], "phenomena": [], "vocabularyKeywords": [ { "ob_id": 10159, "vocabService": "clipc_skos_vocab", "uri": "http://vocab-test.ceda.ac.uk/collection/cci/dataType/dtype_gll", "resolvedTerm": "glacier grounding line location" }, { "ob_id": 10187, "vocabService": "clipc_skos_vocab", "uri": "http://vocab-test.ceda.ac.uk/collection/cci/ecv/cciecv_iceSheet", "resolvedTerm": "ice sheets" }, { "ob_id": 10616, "vocabService": "clipc_skos_vocab", "uri": "http://vocab.ceda.ac.uk/collection/cci/dataType/dtype_gll", "resolvedTerm": "glacier grounding line location" }, { "ob_id": 10666, "vocabService": "clipc_skos_vocab", "uri": "http://vocab.ceda.ac.uk/collection/cci/ecv/cciecv_iceSheet", "resolvedTerm": "ice sheets" } ], "identifier_set": [], "observationcollection_set": [ { "ob_id": 24699, "uuid": "81fb84c4b00640b7a3acb58346497977", "short_code": "coll", "title": "ESA Antarctic Ice Sheet Climate Change Initiative (Antarctic_Ice_Sheet_cci) Dataset Collection", "abstract": "Collection of datasets from the European Space Agency's (ESA) Antarctic Ice Sheets Climate Change Initiative (CCI) project. This is producing long term and reliable climate data records from satellite data for a number of Essential Climate Variables (ECV's) for Antarctica. \r\n\r\nCurrent data products relate to Ice Velocities, Gravimetric Mass Balance, Grounding Line Locations and Surface Elevation Changes." } ], "responsiblepartyinfo_set": [ 101109, 101110, 101111, 101108, 104966, 105190, 105366, 111522, 111526, 101107, 111523, 111524, 111525 ], "onlineresource_set": [ 23251, 23252, 23269, 23270, 23268, 23399, 23400, 23401, 23267 ] }, { "ob_id": 24695, "uuid": "200ff3bf37d744a48b48cb2e3565cace", "title": "ESA Antarctic Ice Sheet Climate Change Initiative (Antarctic_Ice_Sheet_cci): Gravimetric Mass Balance Basin products, v1.1", "abstract": "This dataset provides Gravimetric Mass Balance Basin data for the Antarctic Ice Sheet. It has been produced in the framework of the Antarctic Ice Sheets Climate Change Initiative (CCI) project, under the lead of TU Dresden. \r\n\r\nThe ice sheet mass balance, i.e. the change in ice mass over time, is determined using the US-German satellite gravimetry mission GRACE (Gravity Recovery and Climate Experiment). The Antarctic Ice Sheet CCI GMB products are based on the monthly GRACE solutions ITSG-Grace2016 by Technische Universität Graz, and comprises a time series of mass change grids covering the entire ice sheet (GMB Gridded product), along side mass change time series for different drainage basins (GMB Basin Product). \r\n\r\nThe dataset described here covers version 1.1 of the Basin product. Mass change time series are provided for a number of drainage basins. They describe the evolution of ice mass relative to a modelled reference value, defined to be the GRACE-derived mass as of 2009-01-01. Respective time series are also derived for the total areas of the West Antarctic Ice Sheet, the East Antarctic Ice Sheet, the Antarctic Peninsula and the Antarctic Ice Sheet as a whole.\r\n\r\nIf publishing results based on this dataset, please cite the following: Groh, A., & Horwath, M. (2016). The method of tailored sensitivity kernels for GRACE mass change estimates. Geophysical Research Abstracts, 18, EGU2016-12065.\r\n\r\nInteractive data visualisation is available at: https://data1.geo.tu-dresden.de/ais_gmb/", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2017-06-05T16:33:42.150803", "updateFrequency": "unknown", "dataLineage": "Data were produced by TU Dresden in the context of the ESA CCI Antarctic Ice Sheet project team and are archived on https://data1.geo.tu-dresden.de/ais_gmb/. They have been supplied to CEDA in the context of the ESA CCI Open Data Portal Project.", "removedDataReason": "", "keywords": "Antarctic, Ice sheet, CCI, ESA", "publicationState": "published", "nonGeographicFlag": false, "dontHarvestFromProjects": true, "language": "English", "resolution": "", "status": "superseded", "dataPublishedTime": "2016-11-24T00:00:00", "doiPublishedTime": null, "removedDataTime": null, "geographicExtent": { "ob_id": 1742, "bboxName": "", "eastBoundLongitude": 180.0, "westBoundLongitude": -180.0, "southBoundLatitude": -90.0, "northBoundLatitude": -62.0 }, "verticalExtent": null, "result_field": { "ob_id": 24697, "dataPath": "/neodc/esacci/ice_sheets_antarctica/data/gravimetric_mass_balance/basin/v1.1", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 114055, "numberOfFiles": 3, "fileFormat": "Data are ASCII formatted." }, "timePeriod": { "ob_id": 6696, "startTime": "2002-07-31T23:00:00", "endTime": "2016-07-31T22:59:59" }, "resultQuality": null, "validTimePeriod": null, "procedureAcquisition": null, "procedureComputation": { "ob_id": 25331, "uuid": "e49c3e42244849d382e6c6ff0a0db2d8", "short_code": "comp", "title": "ESA Antarctic Ice Sheet Climate Change Initiative (Antarctic_Ice_Sheet_cci): Gravimetric Mass Balance Basin products", "abstract": "GRACE monthly solutions provided by TU Graz (ITSG-Grace2016)\r\nGRACE-derived time series of basin-averaged Antarctic ice mass changes with respect to the mass as of 2009-01-01 according to a linear, periodic (periods: 1 year, 1/2 year, 161 days) and quadratic model fitted to the monthly solutions in the period 2003-02 - 2013-12\r\ngia_model: IJ05_R2 (http://doi.org/10.1002/jgrb.50208)\r\n" }, "procedureCompositeProcess": null, "imageDetails": [ 111 ], "discoveryKeywords": [ { "ob_id": 1138, "name": "NDGO0003" } ], "permissions": [ { "ob_id": 2534, "accessConstraints": null, "accessCategory": "public", "accessRoles": null, "label": "public: None group", "licence": { "ob_id": 14, "licenceURL": "https://artefacts.ceda.ac.uk/licences/specific_licences/esacci_icesheets_antarctic_terms_and_conditions.pdf", "licenceClassifications": [ { "ob_id": 3, "classification": "any" } ] } } ], "projects": [ { "ob_id": 24700, "uuid": "fda6ad697b2c49f7882f70f954c44f92", "short_code": "proj", "title": "ESA Antarctic Ice Sheet Climate Change Initiative Project", "abstract": "The European Space Agency (ESA) Antarctic Ice Sheet Climate Change Initiative (Antarctic_Ice_Sheet_cci) project is part of ESA's Climate Change Initiative (CCI) programme to produce long term datasets of Essential Climate Variables (ECV's) derived from global satellite data.\r\n\r\nThe Antarctic Ice Sheet CCI aims to produce long term and reliable climate satellite data records required by the scientific user community. These datasets will improve understanding of present day change on the Antarctic Ice Sheet and provide data for models at a higher spatial and temporal resolution than is currently available, thereby improving estimates of future change. It is focusing on providing datasets of surface elevation changes, ice velocities, gravimetric mass balance and grounding line locations." } ], "inspireTheme": [], "topicCategory": [], "phenomena": [], "vocabularyKeywords": [ { "ob_id": 10187, "vocabService": "clipc_skos_vocab", "uri": "http://vocab-test.ceda.ac.uk/collection/cci/ecv/cciecv_iceSheet", "resolvedTerm": "ice sheets" }, { "ob_id": 10666, "vocabService": "clipc_skos_vocab", "uri": "http://vocab.ceda.ac.uk/collection/cci/ecv/cciecv_iceSheet", "resolvedTerm": "ice sheets" }, { "ob_id": 10617, "vocabService": "clipc_skos_vocab", "uri": "http://vocab.ceda.ac.uk/collection/cci/dataType/dtype_gmb", "resolvedTerm": "gravimetric mass balance" }, { "ob_id": 10363, "vocabService": "clipc_skos_vocab", "uri": "http://vocab-test.ceda.ac.uk/collection/cci/dataType/dtype_gmb", "resolvedTerm": "gravimetric mass balance" } ], "identifier_set": [], "observationcollection_set": [ { "ob_id": 24699, "uuid": "81fb84c4b00640b7a3acb58346497977", "short_code": "coll", "title": "ESA Antarctic Ice Sheet Climate Change Initiative (Antarctic_Ice_Sheet_cci) Dataset Collection", "abstract": "Collection of datasets from the European Space Agency's (ESA) Antarctic Ice Sheets Climate Change Initiative (CCI) project. This is producing long term and reliable climate data records from satellite data for a number of Essential Climate Variables (ECV's) for Antarctica. \r\n\r\nCurrent data products relate to Ice Velocities, Gravimetric Mass Balance, Grounding Line Locations and Surface Elevation Changes." } ], "responsiblepartyinfo_set": [ 101122, 101124, 101127, 101125, 105194, 105370, 111516, 111500, 101126, 101128, 111501, 101123 ], "onlineresource_set": [ 23260, 23261, 23266, 23256, 23254, 23257, 23258, 23259, 25403, 23255 ] }, { "ob_id": 24701, "uuid": "e5fb0e74b8104302a43e8a24dc45e038", "title": "AGB-MEX Forrest BIOMASS map for Mexico V1.0", "abstract": "Ground data from the National Forest and Soil Inventory of Mexico (INFyS) were used to calibrate a maximum entropy (MaxEnt) algorithm to generate forest biomass (AGB), its associated uncertainty, and forest probability maps. The input predictor layers for the MaxEnt algorithm were extracted from the moderate resolution imaging spectrometer (MODIS) vegetation index (VI) products, ALOS PALSAR L-band dual-polarization backscatter coefficient images, and the Shuttle Radar Topography Mission (SRTM) digital elevation model. A Jackknife analysis of the model accuracy indicated that the ALOS PALSAR layers have the highest relative contribution (50.9%) to the estimation of AGB, followed by MODIS-VI (32.9%) and SRTM (16.2%). The forest cover mask derived from the forest probability map showed higher accuracy (κ = 0.83) than alternative masks derived from ALOS PALSAR (κ = 0.72–0.78) or MODIS vegetation continuous fields (VCF) with a 10% tree cover threshold (κ = 0.66). The use of different forest cover masks yielded differences of about 30 million ha in forest cover extent and 0.45 Gt C in total carbon stocks. The AGB map showed a root mean square error (RMSE) of 17.3 t C ha− 1 and R2 = 0.31 when validated at the 250 m pixel scale with inventory plots. The error and accuracy at municipality and state levels were RMSE = ± 4.4 t C ha− 1, R2 = 0.75 and RMSE = ± 2.1 t C ha− 1, R2 = 0.94 respectively. We estimate the total carbon stored in the aboveground live biomass of forests of Mexico to be 1.69 Gt C ± 1% (mean carbon density of 21.8 t C ha− 1), which agrees with the total carbon estimated by FAO for the FRA 2010 (1.68 Gt C). The new map, derived directly from the biomass estimates of the national inventory, proved to have similar accuracy as existing forest biomass maps of Mexico, but is more representative of the shape of the probability distribution function of AGB in the national forest inventory data. Our results suggest that the use of a non-parametric maximum entropy model trained with forest inventory plots, even at the sub-pixel size, can provide accurate spatial maps for national or regional REDD + applications and MRV systems.", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2024-09-11T13:05:10", "updateFrequency": "notPlanned", "dataLineage": "Data provided by Pedro Rodriguez-Veiga of University of Leicester as part of NCEO Terrestrial Carbon and Vegetation workplan area . This work was supported by Copernicus Initial Operations - Network for Earth Observation Research Training (GIONET). GIONET was funded by the European Commission, Marie Curie Programme, Initial Training Networks, Grant Agreement number PITN-GA-2010-264509. Pedro Rodriguez-Veiga and Heiko Balzter were supported by the NERC National Centre for Earth Observation (NCEO). Heiko Balzter was also supported by the Royal Society Wolfson Research Merit Award, 2011/R3.", "removedDataReason": "", "keywords": "Forest biomass, Uncertainty, Forest probability, MODIS, ALOS PALSAR, SRTM, Carbon, MaxEnt, REDD +", "publicationState": "published", "nonGeographicFlag": false, "dontHarvestFromProjects": false, "language": "English", "resolution": "Pixel size: 0.00225 degrees x 0.00225 degrees", "status": "completed", "dataPublishedTime": "2017-06-07T11:12:52", "doiPublishedTime": null, "removedDataTime": null, "geographicExtent": { "ob_id": 1743, "bboxName": "Mexico", "eastBoundLongitude": -84.7086110403, "westBoundLongitude": -120.97411104, "southBoundLatitude": 13.7652723077, "northBoundLatitude": 34.2672723077 }, "verticalExtent": null, "result_field": { "ob_id": 24704, "dataPath": "/neodc/nceo_biomass_maps/data/AGB-MEX/", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 465851218, "numberOfFiles": 4, "fileFormat": "GeoTiff, 16 Bit" }, "timePeriod": { "ob_id": 6698, "startTime": "2004-01-01T00:00:00", "endTime": "2012-12-31T23:59:59" }, "resultQuality": null, "validTimePeriod": null, "procedureAcquisition": null, "procedureComputation": { "ob_id": 24703, "uuid": "c96953ef56674498b66bfaf1fcf1f206", "short_code": "comp", "title": "AGB-MEX", "abstract": "The map was generated by means of a combination of the probabilistic outputs from a Maximum Entropy (MaxEnt) algorithm. Approximately 16.000 field inventory plots CONAFOR, INFyS) were used in combination with SAR (JAXA, ALOS PALSAR) and optical data (NASA, MODIS VI), as well as a digital elevation model (NASA, SRTM). " }, "procedureCompositeProcess": null, "imageDetails": [ 130 ], "discoveryKeywords": [ { "ob_id": 1138, "name": "NDGO0003" } ], "permissions": [ { "ob_id": 2526, "accessConstraints": null, "accessCategory": "public", "accessRoles": null, "label": "public: None group", "licence": { "ob_id": 3, "licenceURL": "http://www.nationalarchives.gov.uk/doc/open-government-licence/version/3/", "licenceClassifications": [ { "ob_id": 3, "classification": "any" } ] } } ], "projects": [ { "ob_id": 5002, "uuid": "60e718d3f2957f742c89b2b4fc159718", "short_code": "proj", "title": "National Centre for Earth Observation (NCEO)", "abstract": "The National Centre for Earth Observation is a partnership of scientists and institutions, from a range of disciplines, who are using data from Earth observation satellites to monitor global and regional changes in the environment and to improve understanding of the Earth system so that we can predict future environmental conditions.\r\n\r\nNCEO's Vision is to unlock the full potential of Earth observation to monitor, diagnose and predict climate and environmental changes, ensuring that these scientific advances are delivered to the wider community embedded in world class science." } ], "inspireTheme": [], "topicCategory": [], "phenomena": [ 25988 ], "vocabularyKeywords": [], "identifier_set": [], "observationcollection_set": [ { "ob_id": 30127, "uuid": "82b29f96b8c94db28ecc51a479f8c9c6", "short_code": "coll", "title": "National Centre for Earth Observation (NCEO) Core datasets", "abstract": "This NCEO Core data set collection contains data generated by the National Centre for Earth Observation core scientific programmes. NCEO is a National Environment Research Council (NERC) research centre with more than 80 scientists distributed across leading UK universities and research organisations and led by Professor John Remedios at the University of Leicester.\r\n\r\nNCEO provides the UK with core expertise in Earth Observation science, data sets and merging techniques, and model evaluation to underpin Earth System research and the UK’s international contribution to environmental science. NCEO scientists work strategically with space agencies, play significant roles in mission planning, and generate internationally-recognised data products from 20 different satellite instruments." } ], "responsiblepartyinfo_set": [ 101142, 101143, 101144, 101145, 101147, 101148, 101149, 101146, 101140, 101139, 101141 ], "onlineresource_set": [ 23279 ] }, { "ob_id": 24710, "uuid": "8c03f651457f458eaf7b16f68670a0b8", "title": "Ensemble of Global and EU Regional climate simulations from the HadAM3P-RM3P model for Winter 2013/14", "abstract": "Large data sets used to study the impact of anthropogenic climate change on the 2013/14 floods in the UK are provided. Data consists of perturbed initial conditions simulations using the Weather@Home regional climate modelling framework. Two different base conditions, Actual, including atmospheric conditions (anthropogenic greenhouse gases and human induced aerosols) as at present and Natural, with these forcings all removed are available. The data set is made up of 13 different ensembles (2 actual and 11 natural) with each having more than 7500 members. The data is available as NetCDF V3 files with their content representing an individual month of simulation. Data within that includes diagnostics written at daily, weekly and monthly within the period of interest (1st Dec 2013 to 15th February 2014) for both a specified European region at a 50km horizontal resolution and globally at N96 resolution. The data were generated in support of the European FP7 project - EUropean CLimate and weather Events: Interpretation and Attribution (EUCLEIA). Full details are available within Sparrow et al 2017, Nature Scientific Data.\r\n", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2021-06-16T15:14:36", "updateFrequency": "notPlanned", "dataLineage": "The Weather@Home climate simulation environment uses the HadAM3P Atmosphere-only General Circulation Model (AGCM) with an embedded Regional Climate Model (RCM) variant, HadRM3P, both from the UK Met Office Hadley Centre. These models are based upon the atmospheric component of HadCM39, a well documented and widely used coupled ocean – atmosphere model. HadRM3P is the regional model used in the Providing Regional Climates for Impacts Studies project (PRECIS)10, also originating from the UK Met Office.", "removedDataReason": "", "keywords": "HadAM3P-RM3P, Model, Winter, EUCLEIA", "publicationState": "citable", "nonGeographicFlag": false, "dontHarvestFromProjects": false, "language": "English", "resolution": "", "status": "completed", "dataPublishedTime": "2017-06-09T15:11:11", "doiPublishedTime": "2017-12-19T10:45:14.911909", "removedDataTime": null, "geographicExtent": { "ob_id": 1745, "bboxName": "", "eastBoundLongitude": -76.5, "westBoundLongitude": 53.7, "southBoundLatitude": 17.7, "northBoundLatitude": 67.1 }, "verticalExtent": null, "result_field": { "ob_id": 24709, "dataPath": "/badc/weather_at_home/data/1314Floods", "oldDataPath": [], "storageLocation": "internal", "storageStatus": "online", "volume": 26019856107221, "numberOfFiles": 696639, "fileFormat": "Data are netCDF formatted" }, "timePeriod": { "ob_id": 6700, "startTime": "2013-12-01T00:00:00", "endTime": "2014-02-15T00:00:00" }, "resultQuality": { "ob_id": 3085, "explanation": "Research data.", "passesTest": true, "resultTitle": "CEDA Data Quality Statement", "date": "2017-06-09" }, "validTimePeriod": null, "procedureAcquisition": null, "procedureComputation": { "ob_id": 24711, "uuid": "b0462f6ec644428d8cafbe4f20242d5a", "short_code": "comp", "title": "Weather at home - HadAM3P-HadRM3P", "abstract": "UK Metoffice PRECIS model, Global HadAM3P with embedded regional HadRM3P" }, "procedureCompositeProcess": null, "imageDetails": [], "discoveryKeywords": [ { "ob_id": 1138, "name": "NDGO0003" } ], "permissions": [ { "ob_id": 2526, "accessConstraints": null, "accessCategory": "public", "accessRoles": null, "label": "public: None group", "licence": { "ob_id": 3, "licenceURL": "http://www.nationalarchives.gov.uk/doc/open-government-licence/version/3/", "licenceClassifications": [ { "ob_id": 3, "classification": "any" } ] } } ], "projects": [ { "ob_id": 14514, "uuid": "df021ea6dd0248e5a8a411f3b80e9859", "short_code": "proj", "title": "EUCLEIA: European Climate and weather Events: Interpretation and Attribution", "abstract": "Climate change is expected to impact extreme weather in Europe. There is therefore a clear need to adapt effectively to climate change, particularly in Europe, where recent heatwaves, floods and droughts have demonstrated the vulnerability of European citizens to extreme weather. However, scientifically robust information about the extent to which recent extreme weather can be linked to climate variability and change is often lacking.\r\n\r\nAims:\r\n* provide well verified assessments of the extent to which such weather-related risks have changed due to human influences on climate.\r\n* identify those types of weather events where the science is still too uncertain to make a robust assessment of attributable risk.\r\n\r\nApproach:\r\nEUCLEIA will work closely with stakeholders to establish their requirements for event attribution products, and to help develop climate attribution strategies. Stakeholder groups include: insurance industry, regional managers, policy makers, general public, legal field." } ], "inspireTheme": [], "topicCategory": [], "phenomena": [], "vocabularyKeywords": [], "identifier_set": [ 9361 ], "observationcollection_set": [], "responsiblepartyinfo_set": [ 101172, 101173, 101174, 101175, 101176, 101177, 101179, 101178, 101180, 101181, 101182, 101183, 101184, 101185, 101186 ], "onlineresource_set": [ 23283, 87596 ] }, { "ob_id": 24712, "uuid": "c657ee46354d480b8cf668addf0b43f2", "title": "ESA Soil Moisture Climate Change Initiative (Soil_Moisture_cci): 'Active' Product, Version 03.2", "abstract": "The Soil Moisture CCI 'Active' dataset is one of the three datasets created as part of the European Space Agency's (ESA) Soil Moisture Essential Climate Variable (ECV) CCI project. The product has been created by fusing scatterometer soil moisture products, derived from the instruments AMI-WS and ASCAT. 'Passive' and 'Combined' products have also been created. The 'Passive' product is a fusion of radiometer data acquired by the SMMR, SSM/I, TMI, AMSR-E, WindSat, AMSR2,. and SMOS satellite instruments. The 'Combined Product' is then a blended product based on the former two data sets.\r\n\r\nThe v03.2 Active product, provided as global daily images in NetCDF-4 classic file format, presents a global coverage of surface soil moisture at a spatial resolution of 0.25 degrees. It covers the period 1991-08-05 to 2015-12-31 and is expressed in percent of saturation [%]. For information regarding the theoretical and algorithmic base of the product, please see the Algorithm Theoretical Baseline Document. Other additional reference documents and information relating to the dataset can also be found on the CCI Soil Moisture project web site or within the Product Specification Document.\r\n\r\nThe data set should be cited using all three of the following references:\r\n1. Dorigo, W.A., Wagner, W., Albergel, C., Albrecht, F., Balsamo, G., Brocca, L., Chung, D., Ertl, M., Forkel, M., Gruber, A., Haas, E., Hamer, D. P. Hirschi, M., Ikonen, J., De Jeu, R. Kidd, R. Lahoz, W., Liu, Y.Y., Miralles, D., Lecomte, P. (2017). ESA CCI Soil Moisture for improved Earth system understanding: State-of-the art and future directions. In Remote Sensing of Environment, 2017, ISSN 0034-4257, https://doi.org/10.1016/j.rse.2017.07.001\r\n\r\n2. Gruber, A., Dorigo, W. A., Crow, W., Wagner W. (2017). Triple Collocation-Based Merging of Satellite Soil Moisture Retrievals. IEEE Transactions on Geoscience and Remote Sensing. PP. 1-13. 10.1109/TGRS.2017.2734070\r\n\r\n3. Liu, Y.Y., Dorigo, W.A., Parinussa, R.M., de Jeu, R.A.M. , Wagner, W., McCabe, M.F., Evans, J.P., van Dijk, A.I.J.M. (2012). 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[ { "ob_id": 12877, "uuid": "6e4abd45503d44f09c74ee3a0e8fefb7", "short_code": "coll", "title": "ESA Soil Moisture (SM) Climate Change Initiative (CCI) Dataset Collection", "abstract": "As part of the European Space Agency's (ESA) Soil Moisture Climate Change Initiative (CCI) project, three surface soil moisture datasets have been created. The 'Active' and 'Passive' products have been created by fusing scatterometer and radiometer soil moisture products respectively. In the case of the 'Active' product, these have been derived from AMI-WS and ASCAT instruments and for the 'Passive' product from the instruments SMMR, SSM/I, TMI, AMSR-E, WindSat, AMSR2, SMOS and SMAP (dependent on version). The 'Combined Product' is then a blended product based on the former two data sets. The Ancillary datasets involved in their production are also available. \r\n\r\nThe homogenized and merged products present a global coverage of surface soil moisture at a spatial resolution of 0.25 degrees. The products are provided as global daily images, in NetCDF-4 classic file format, the Passive and Combined products covering the period (yyyy-mm-dd) 1978-11-01 to 2017-12-31 and the Active product covering 1991-08-05 to 2017-12-31 (dependent on version). The soil moisture data for the Passive and the Combined product are provided in volumetric units [m3 m-3], while the active soil moisture data are expressed in percent of saturation [%]. For information regarding the theoretical and algorithmic base of the datasets, please see the Algorithm Theoretical Baseline Document (ATBD) or the papers cited below. Other additional documentation and information documentation relating to the datasets can also be found on the CCI Soil Moisture project web site or in the Product Specification Document.\r\n\r\nThe data set should be cited using the complete references as follows:\r\nVersion 2.1 and v2.2\r\n1. Liu, Y. Y., W. A. Dorigo, et al. (2012). \"Trend-preserving blending of passive and active microwave soil moisture retrievals.\" Remote Sensing of Environment 123: 280-297.\r\n2. Liu, Y. Y., Parinussa, R. M., Dorigo, W. A., De Jeu, R. A. M., Wagner, W., van Dijk, A. I. J. M., McCabe, M. F., Evans, J. P. (2011). Developing an improved soil moisture dataset by blending passive and active microwave satellite-based retrievals. Hydrology and Earth System Sciences, 15, 425-436\r\n3. Wagner, W., W. Dorigo, R. de Jeu, D. Fernandez, J. Benveniste, E. Haas, M. Ertl (2012). Fusion of active and passive microwave observations to create an Essential Climate Variable data record on soil moisture. ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences (ISPRS Annals), Volume I-7, XXII ISPRS Congress, Melbourne, Australia, 25 August-1 September 2012, 315-321\r\n\r\nVersion 3.2 onwards:\r\n1. Dorigo, W.A., Wagner, W., Albergel, C., Albrecht, F., Balsamo, G., Brocca, L., Chung, D., Ertl, M., Forkel, M., Gruber, A., Haas, E., Hamer, D. P. Hirschi, M., Ikonen, J., De Jeu, R. Kidd, R. Lahoz, W., Liu, Y.Y., Miralles, D., Lecomte, P. (2017). ESA CCI Soil Moisture for improved Earth system understanding: State-of-the art and future directions. In Remote Sensing of Environment, 2017, ISSN 0034-4257, https://doi.org/10.1016/j.rse.2017.07.001\r\n\r\n2. Gruber, A., Dorigo, W. A., Crow, W., Wagner W. (2017). Triple Collocation-Based Merging of Satellite Soil Moisture Retrievals. IEEE Transactions on Geoscience and Remote Sensing. PP. 1-13. 10.1109/TGRS.2017.2734070\r\n\r\n3. Liu, Y.Y., Dorigo, W.A., Parinussa, R.M., de Jeu, R.A.M. , Wagner, W., McCabe, M.F., Evans, J.P., van Dijk, A.I.J.M. (2012). Trend-preserving blending of passive and active microwave soil moisture retrievals, Remote Sensing of Environment, 123, 280-297, doi: 10.1016/j.rse.2012.03.014" }, { "ob_id": 26164, "uuid": "d2eea061026240eb8a2f9cc64a691338", "short_code": "coll", "title": "ESA Soil Moisture Climate Change Initiative (Soil_Moisture_cci): Version 03.2 data collection", "abstract": "Soil Moisture data (version 03.2) from the European Space Agency's (ESA) Soil Moisture Climate Change Initiative (CCI) project. This dataset collection contains three surface soil moisture datasets, alongside ancilliary data products. The 'Active' and 'Passive' products have been created by fusing scatterometer and radiometer soil moisture products respectively. In the case of the 'Active' product, these have been derived from AMI-WS and ASCAT satellite instruments and for the 'Passive' product from the instruments SMMR, SSM/I, TMI, AMSR-E, WindSat, AMSR2 and SMOS. The 'Combined Product' is then a blended product based on the former two data sets. \r\n\r\nThe homogenized and merged products present a global coverage of surface soil moisture at a spatial resolution of 0.25 degrees. The products are provided as global daily images, in NetCDF-4 classic file format, the Passive and Combined products covering the period (yyyy-mm-dd) 1978-11-01 to 2014-12-31 and the Active product covering 1991-08-05 to 2014-12-31. The soil moisture data for the Passive and the Combined product are provided in volumetric units [m3 m-3], while the active soil moisture data are expressed in percent of saturation [%]. For information regarding the theoretical and algorithmic base of the datasets, please see the Algorithm Theoretical Baseline Document (ATBD) or the paper by Wagner 2012, both available in linked documentation. Other additional documentation and information documentation relating to the datasets can also be found on the CCI Soil Moisture project web site or in the Product Specification Document.\r\n\r\nThe data set should be cited using all three of the following references:\r\n\r\n1. Dorigo, W.A., Wagner, W., Albergel, C., Albrecht, F., Balsamo, G., Brocca, L., Chung, D., Ertl, M., Forkel, M., Gruber, A., Haas, E., Hamer, D. P. Hirschi, M., Ikonen, J., De Jeu, R. Kidd, R. Lahoz, W., Liu, Y.Y., Miralles, D., Lecomte, P. (2017). ESA CCI Soil Moisture for improved Earth system understanding: State-of-the art and future directions. In Remote Sensing of Environment, 2017, ISSN 0034-4257, https://doi.org/10.1016/j.rse.2017.07.001\r\n\r\n2. Gruber, A., Dorigo, W. A., Crow, W., Wagner W. (2017). Triple Collocation-Based Merging of Satellite Soil Moisture Retrievals. IEEE Transactions on Geoscience and Remote Sensing. PP. 1-13. 10.1109/TGRS.2017.2734070\r\n\r\n3. Liu, Y.Y., Dorigo, W.A., Parinussa, R.M., de Jeu, R.A.M. , Wagner, W., McCabe, M.F., Evans, J.P., van Dijk, A.I.J.M. (2012). Trend-preserving blending of passive and active microwave soil moisture retrievals, Remote Sensing of Environment, 123, 280-297, doi: 10.1016/j.rse.2012.03.014" } ], "responsiblepartyinfo_set": [ 101191, 101193, 101195, 104972, 105196, 105372, 109998, 101196, 109997, 109999, 110000, 110001, 110002, 110003, 110004, 110005, 110006, 110007 ], "onlineresource_set": [ 23292, 23287, 23295, 23286, 23289, 23291, 23296, 24904, 24905, 25070, 24903, 26048, 23293, 42137 ] }, { "ob_id": 24714, "uuid": "71e20f6a7d6e4ec392f9afcbce14eced", "title": "ESA Soil Moisture Climate Change Initiative (Soil_Moisture_cci): 'Passive' Product, Version 03.2", "abstract": "The Soil Moisture CCI 'Passive' dataset is one of the three datasets created as part of the European Space Agency's (ESA) Soil Moisture Essential Climate Variable (ECV) CCI project. The product has been created by fusing radiometer soil moisture products, merging data from the SMMR, SSM/I, TMI, AMSR-E, WindSat, AMSR2 and SMOS satellite instruments. 'Active' and 'Combined' products have also been created, the 'Active' product being a fusion of AMI-WS and ASCAT derived scatterometer products and the 'Combined Product' being a blended product based on the former two data sets. \r\n\r\nThe v03.2 Passive product presents a global coverage of surface soil moisture at a spatial resolution of 0.25 degrees. The product is provided in volumetric units [m3 m-3] and covers the period (yyyy-mm-dd) 1978-11-01 to 2015-12-31. It consists of global daily images stored within yearly folders and are NetCDF-4 classic file formatted. For information regarding the theoretical and algorithmic base of the product, please see the Algorithm Theoretical Baseline Document. Other additional reference documents and information relating to the dataset can also be found on the CCI Soil Moisture project web site or within the Product Specification Document.\r\n\r\nThe data set should be cited using all three of the following references:\r\n\r\n1. Dorigo, W.A., Wagner, W., Albergel, C., Albrecht, F., Balsamo, G., Brocca, L., Chung, D., Ertl, M., Forkel, M., Gruber, A., Haas, E., Hamer, D. P. Hirschi, M., Ikonen, J., De Jeu, R. Kidd, R. Lahoz, W., Liu, Y.Y., Miralles, D., Lecomte, P. (2017). ESA CCI Soil Moisture for improved Earth system understanding: State-of-the art and future directions. In Remote Sensing of Environment, 2017, ISSN 0034-4257, https://doi.org/10.1016/j.rse.2017.07.001\r\n\r\n2. Gruber, A., Dorigo, W. A., Crow, W., Wagner W. (2017). Triple Collocation-Based Merging of Satellite Soil Moisture Retrievals. IEEE Transactions on Geoscience and Remote Sensing. PP. 1-13. 10.1109/TGRS.2017.2734070\r\n\r\n3. Liu, Y.Y., Dorigo, W.A., Parinussa, R.M., de Jeu, R.A.M. , Wagner, W., McCabe, M.F., Evans, J.P., van Dijk, A.I.J.M. (2012). 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"uuid": "6e4abd45503d44f09c74ee3a0e8fefb7", "short_code": "coll", "title": "ESA Soil Moisture (SM) Climate Change Initiative (CCI) Dataset Collection", "abstract": "As part of the European Space Agency's (ESA) Soil Moisture Climate Change Initiative (CCI) project, three surface soil moisture datasets have been created. The 'Active' and 'Passive' products have been created by fusing scatterometer and radiometer soil moisture products respectively. In the case of the 'Active' product, these have been derived from AMI-WS and ASCAT instruments and for the 'Passive' product from the instruments SMMR, SSM/I, TMI, AMSR-E, WindSat, AMSR2, SMOS and SMAP (dependent on version). The 'Combined Product' is then a blended product based on the former two data sets. The Ancillary datasets involved in their production are also available. \r\n\r\nThe homogenized and merged products present a global coverage of surface soil moisture at a spatial resolution of 0.25 degrees. The products are provided as global daily images, in NetCDF-4 classic file format, the Passive and Combined products covering the period (yyyy-mm-dd) 1978-11-01 to 2017-12-31 and the Active product covering 1991-08-05 to 2017-12-31 (dependent on version). The soil moisture data for the Passive and the Combined product are provided in volumetric units [m3 m-3], while the active soil moisture data are expressed in percent of saturation [%]. For information regarding the theoretical and algorithmic base of the datasets, please see the Algorithm Theoretical Baseline Document (ATBD) or the papers cited below. Other additional documentation and information documentation relating to the datasets can also be found on the CCI Soil Moisture project web site or in the Product Specification Document.\r\n\r\nThe data set should be cited using the complete references as follows:\r\nVersion 2.1 and v2.2\r\n1. Liu, Y. Y., W. A. Dorigo, et al. (2012). \"Trend-preserving blending of passive and active microwave soil moisture retrievals.\" Remote Sensing of Environment 123: 280-297.\r\n2. Liu, Y. Y., Parinussa, R. M., Dorigo, W. A., De Jeu, R. A. M., Wagner, W., van Dijk, A. I. J. M., McCabe, M. F., Evans, J. P. (2011). Developing an improved soil moisture dataset by blending passive and active microwave satellite-based retrievals. Hydrology and Earth System Sciences, 15, 425-436\r\n3. Wagner, W., W. Dorigo, R. de Jeu, D. Fernandez, J. Benveniste, E. Haas, M. Ertl (2012). Fusion of active and passive microwave observations to create an Essential Climate Variable data record on soil moisture. ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences (ISPRS Annals), Volume I-7, XXII ISPRS Congress, Melbourne, Australia, 25 August-1 September 2012, 315-321\r\n\r\nVersion 3.2 onwards:\r\n1. Dorigo, W.A., Wagner, W., Albergel, C., Albrecht, F., Balsamo, G., Brocca, L., Chung, D., Ertl, M., Forkel, M., Gruber, A., Haas, E., Hamer, D. P. Hirschi, M., Ikonen, J., De Jeu, R. Kidd, R. Lahoz, W., Liu, Y.Y., Miralles, D., Lecomte, P. (2017). ESA CCI Soil Moisture for improved Earth system understanding: State-of-the art and future directions. In Remote Sensing of Environment, 2017, ISSN 0034-4257, https://doi.org/10.1016/j.rse.2017.07.001\r\n\r\n2. Gruber, A., Dorigo, W. A., Crow, W., Wagner W. (2017). Triple Collocation-Based Merging of Satellite Soil Moisture Retrievals. IEEE Transactions on Geoscience and Remote Sensing. PP. 1-13. 10.1109/TGRS.2017.2734070\r\n\r\n3. Liu, Y.Y., Dorigo, W.A., Parinussa, R.M., de Jeu, R.A.M. , Wagner, W., McCabe, M.F., Evans, J.P., van Dijk, A.I.J.M. (2012). Trend-preserving blending of passive and active microwave soil moisture retrievals, Remote Sensing of Environment, 123, 280-297, doi: 10.1016/j.rse.2012.03.014" }, { "ob_id": 26164, "uuid": "d2eea061026240eb8a2f9cc64a691338", "short_code": "coll", "title": "ESA Soil Moisture Climate Change Initiative (Soil_Moisture_cci): Version 03.2 data collection", "abstract": "Soil Moisture data (version 03.2) from the European Space Agency's (ESA) Soil Moisture Climate Change Initiative (CCI) project. This dataset collection contains three surface soil moisture datasets, alongside ancilliary data products. The 'Active' and 'Passive' products have been created by fusing scatterometer and radiometer soil moisture products respectively. In the case of the 'Active' product, these have been derived from AMI-WS and ASCAT satellite instruments and for the 'Passive' product from the instruments SMMR, SSM/I, TMI, AMSR-E, WindSat, AMSR2 and SMOS. The 'Combined Product' is then a blended product based on the former two data sets. \r\n\r\nThe homogenized and merged products present a global coverage of surface soil moisture at a spatial resolution of 0.25 degrees. The products are provided as global daily images, in NetCDF-4 classic file format, the Passive and Combined products covering the period (yyyy-mm-dd) 1978-11-01 to 2014-12-31 and the Active product covering 1991-08-05 to 2014-12-31. The soil moisture data for the Passive and the Combined product are provided in volumetric units [m3 m-3], while the active soil moisture data are expressed in percent of saturation [%]. For information regarding the theoretical and algorithmic base of the datasets, please see the Algorithm Theoretical Baseline Document (ATBD) or the paper by Wagner 2012, both available in linked documentation. Other additional documentation and information documentation relating to the datasets can also be found on the CCI Soil Moisture project web site or in the Product Specification Document.\r\n\r\nThe data set should be cited using all three of the following references:\r\n\r\n1. Dorigo, W.A., Wagner, W., Albergel, C., Albrecht, F., Balsamo, G., Brocca, L., Chung, D., Ertl, M., Forkel, M., Gruber, A., Haas, E., Hamer, D. P. Hirschi, M., Ikonen, J., De Jeu, R. Kidd, R. Lahoz, W., Liu, Y.Y., Miralles, D., Lecomte, P. (2017). ESA CCI Soil Moisture for improved Earth system understanding: State-of-the art and future directions. In Remote Sensing of Environment, 2017, ISSN 0034-4257, https://doi.org/10.1016/j.rse.2017.07.001\r\n\r\n2. Gruber, A., Dorigo, W. A., Crow, W., Wagner W. (2017). Triple Collocation-Based Merging of Satellite Soil Moisture Retrievals. IEEE Transactions on Geoscience and Remote Sensing. PP. 1-13. 10.1109/TGRS.2017.2734070\r\n\r\n3. Liu, Y.Y., Dorigo, W.A., Parinussa, R.M., de Jeu, R.A.M. , Wagner, W., McCabe, M.F., Evans, J.P., van Dijk, A.I.J.M. (2012). Trend-preserving blending of passive and active microwave soil moisture retrievals, Remote Sensing of Environment, 123, 280-297, doi: 10.1016/j.rse.2012.03.014" } ], "responsiblepartyinfo_set": [ 101198, 101199, 101200, 104969, 105193, 105369, 110008, 101201, 109472, 110009, 110010, 110011, 110012, 110013, 110014, 110015, 110016, 110017 ], "onlineresource_set": [ 23298, 23299, 23305, 23303, 23307, 23304, 23306, 23301, 24906, 24907, 24908, 25071, 26047, 42138 ] }, { "ob_id": 24715, "uuid": "7c7a38b2d2ce448b99194bff85a85248", "title": "ESA Soil Moisture Climate Change Initiative (Soil_Moisture_cci): 'Combined' Product, Version 03.2", "abstract": "The Soil Moisture CCI 'Combined' dataset is one of the three datasets created as part of the European Space Agency's (ESA) Soil Moisture Essential Climate Variable (ECV) CCI project. The product has been created by merging the \"Active\" and \"Passive\" datasets which were created for the project, these being respectively fusions of scatterometer and radiometer soil moisture products derived from the AMI-WS, ASCAT, SMMR, SSM/I, TMI, AMSR-E, WindSat, AMSR2 and SMOS satelllite instruments. \r\n\r\nThe product, provided as global daily images in NetCDF-4 classic file format, presents a global coverage of surface soil moisture at a spatial resolution of 0.25 degrees. It is provided in volumetric units [m3 m-3] and covers the period (yyyy-mm-dd) 1978-11-01 to 2015-12-31. For information regarding the theoretical and algorithmic base of the product, please see the Algorithm Theoretical Baseline Document version 2.0 or the paper by Wagner 2012, both available in the documentation section. An overview of all known errors associated with it is provided in the Comprehensive Error Characterization Report. Other additional reference documents and information relating to the dataset can also be found on the CCI Soil Moisture project web site or within the Product Specification Document.\r\n\r\nThe data set should be cited using all three of the following references:\r\n\r\n1. Dorigo, W.A., Wagner, W., Albergel, C., Albrecht, F., Balsamo, G., Brocca, L., Chung, D., Ertl, M., Forkel, M., Gruber, A., Haas, E., Hamer, D. P. Hirschi, M., Ikonen, J., De Jeu, R. Kidd, R. Lahoz, W., Liu, Y.Y., Miralles, D., Lecomte, P. (2017). ESA CCI Soil Moisture for improved Earth system understanding: State-of-the art and future directions. In Remote Sensing of Environment, 2017, ISSN 0034-4257, https://doi.org/10.1016/j.rse.2017.07.001\r\n\r\n2. Gruber, A., Dorigo, W. A., Crow, W., Wagner W. (2017). Triple Collocation-Based Merging of Satellite Soil Moisture Retrievals. IEEE Transactions on Geoscience and Remote Sensing. PP. 1-13. 10.1109/TGRS.2017.2734070\r\n\r\n3. Liu, Y.Y., Dorigo, W.A., Parinussa, R.M., de Jeu, R.A.M. , Wagner, W., McCabe, M.F., Evans, J.P., van Dijk, A.I.J.M. (2012). Trend-preserving blending of passive and active microwave soil moisture retrievals, Remote Sensing of Environment, 123, 280-297, doi: 10.1016/j.rse.2012.03.014", "creationDate": "2022-07-22T09:15:57.183554", "lastUpdatedDate": "2022-07-22T09:15:57.272326", "latestDataUpdateTime": "2017-06-10T19:47:08.139179", "updateFrequency": "notPlanned", "dataLineage": "Data were processed by the ESA CCI Soil Moisture project team and transferred to CEDA for the ESA CCI Open Data Portal Project.\r\nThis dataset forms part of the CCI Soil Moisture v03.2 dataset collection (doi:10.5285/d2eea061026240eb8a2f9cc64a691338. http://dx.doi.org/10.5285/d2eea061026240eb8a2f9cc64a691338 )", "removedDataReason": "", "keywords": "ESA, Soil Moisture, CCI, Combined", "publicationState": "published", "nonGeographicFlag": false, "dontHarvestFromProjects": true, "language": "English", "resolution": "", "status": "superseded", "dataPublishedTime": "2017-06-28T13:57:11", "doiPublishedTime": null, "removedDataTime": 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The 'Active' and 'Passive' products have been created by fusing scatterometer and radiometer soil moisture products respectively. In the case of the 'Active' product, these have been derived from AMI-WS and ASCAT instruments and for the 'Passive' product from the instruments SMMR, SSM/I, TMI, AMSR-E, WindSat, AMSR2, SMOS and SMAP (dependent on version). The 'Combined Product' is then a blended product based on the former two data sets. The Ancillary datasets involved in their production are also available. \r\n\r\nThe homogenized and merged products present a global coverage of surface soil moisture at a spatial resolution of 0.25 degrees. The products are provided as global daily images, in NetCDF-4 classic file format, the Passive and Combined products covering the period (yyyy-mm-dd) 1978-11-01 to 2017-12-31 and the Active product covering 1991-08-05 to 2017-12-31 (dependent on version). The soil moisture data for the Passive and the Combined product are provided in volumetric units [m3 m-3], while the active soil moisture data are expressed in percent of saturation [%]. For information regarding the theoretical and algorithmic base of the datasets, please see the Algorithm Theoretical Baseline Document (ATBD) or the papers cited below. Other additional documentation and information documentation relating to the datasets can also be found on the CCI Soil Moisture project web site or in the Product Specification Document.\r\n\r\nThe data set should be cited using the complete references as follows:\r\nVersion 2.1 and v2.2\r\n1. Liu, Y. Y., W. A. Dorigo, et al. (2012). \"Trend-preserving blending of passive and active microwave soil moisture retrievals.\" Remote Sensing of Environment 123: 280-297.\r\n2. Liu, Y. Y., Parinussa, R. M., Dorigo, W. A., De Jeu, R. A. M., Wagner, W., van Dijk, A. I. J. M., McCabe, M. F., Evans, J. P. (2011). Developing an improved soil moisture dataset by blending passive and active microwave satellite-based retrievals. Hydrology and Earth System Sciences, 15, 425-436\r\n3. Wagner, W., W. Dorigo, R. de Jeu, D. Fernandez, J. Benveniste, E. Haas, M. Ertl (2012). Fusion of active and passive microwave observations to create an Essential Climate Variable data record on soil moisture. ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences (ISPRS Annals), Volume I-7, XXII ISPRS Congress, Melbourne, Australia, 25 August-1 September 2012, 315-321\r\n\r\nVersion 3.2 onwards:\r\n1. Dorigo, W.A., Wagner, W., Albergel, C., Albrecht, F., Balsamo, G., Brocca, L., Chung, D., Ertl, M., Forkel, M., Gruber, A., Haas, E., Hamer, D. P. Hirschi, M., Ikonen, J., De Jeu, R. Kidd, R. Lahoz, W., Liu, Y.Y., Miralles, D., Lecomte, P. (2017). ESA CCI Soil Moisture for improved Earth system understanding: State-of-the art and future directions. In Remote Sensing of Environment, 2017, ISSN 0034-4257, https://doi.org/10.1016/j.rse.2017.07.001\r\n\r\n2. Gruber, A., Dorigo, W. A., Crow, W., Wagner W. (2017). Triple Collocation-Based Merging of Satellite Soil Moisture Retrievals. IEEE Transactions on Geoscience and Remote Sensing. PP. 1-13. 10.1109/TGRS.2017.2734070\r\n\r\n3. Liu, Y.Y., Dorigo, W.A., Parinussa, R.M., de Jeu, R.A.M. , Wagner, W., McCabe, M.F., Evans, J.P., van Dijk, A.I.J.M. (2012). Trend-preserving blending of passive and active microwave soil moisture retrievals, Remote Sensing of Environment, 123, 280-297, doi: 10.1016/j.rse.2012.03.014" }, { "ob_id": 26164, "uuid": "d2eea061026240eb8a2f9cc64a691338", "short_code": "coll", "title": "ESA Soil Moisture Climate Change Initiative (Soil_Moisture_cci): Version 03.2 data collection", "abstract": "Soil Moisture data (version 03.2) from the European Space Agency's (ESA) Soil Moisture Climate Change Initiative (CCI) project. This dataset collection contains three surface soil moisture datasets, alongside ancilliary data products. The 'Active' and 'Passive' products have been created by fusing scatterometer and radiometer soil moisture products respectively. In the case of the 'Active' product, these have been derived from AMI-WS and ASCAT satellite instruments and for the 'Passive' product from the instruments SMMR, SSM/I, TMI, AMSR-E, WindSat, AMSR2 and SMOS. The 'Combined Product' is then a blended product based on the former two data sets. \r\n\r\nThe homogenized and merged products present a global coverage of surface soil moisture at a spatial resolution of 0.25 degrees. The products are provided as global daily images, in NetCDF-4 classic file format, the Passive and Combined products covering the period (yyyy-mm-dd) 1978-11-01 to 2014-12-31 and the Active product covering 1991-08-05 to 2014-12-31. The soil moisture data for the Passive and the Combined product are provided in volumetric units [m3 m-3], while the active soil moisture data are expressed in percent of saturation [%]. For information regarding the theoretical and algorithmic base of the datasets, please see the Algorithm Theoretical Baseline Document (ATBD) or the paper by Wagner 2012, both available in linked documentation. Other additional documentation and information documentation relating to the datasets can also be found on the CCI Soil Moisture project web site or in the Product Specification Document.\r\n\r\nThe data set should be cited using all three of the following references:\r\n\r\n1. Dorigo, W.A., Wagner, W., Albergel, C., Albrecht, F., Balsamo, G., Brocca, L., Chung, D., Ertl, M., Forkel, M., Gruber, A., Haas, E., Hamer, D. P. Hirschi, M., Ikonen, J., De Jeu, R. Kidd, R. Lahoz, W., Liu, Y.Y., Miralles, D., Lecomte, P. (2017). ESA CCI Soil Moisture for improved Earth system understanding: State-of-the art and future directions. In Remote Sensing of Environment, 2017, ISSN 0034-4257, https://doi.org/10.1016/j.rse.2017.07.001\r\n\r\n2. Gruber, A., Dorigo, W. A., Crow, W., Wagner W. (2017). Triple Collocation-Based Merging of Satellite Soil Moisture Retrievals. IEEE Transactions on Geoscience and Remote Sensing. PP. 1-13. 10.1109/TGRS.2017.2734070\r\n\r\n3. Liu, Y.Y., Dorigo, W.A., Parinussa, R.M., de Jeu, R.A.M. , Wagner, W., McCabe, M.F., Evans, J.P., van Dijk, A.I.J.M. (2012). 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Many observed changes are unprecedented in instrumental records. Changes in the NA directly affect the UK’s climate, weather and air quality, with major economic impacts on agriculture, fisheries, water, energy, transport and health. The NA also has global importance, since changes here drive changes in climate, hazardous weather and air quality further afield, such as in North America, Africa and Asia.\r\n\r\nACSIS (the North Atlantic Climate System Integrated Study) was an integrated programme of sustained observations, synthesis, and numerical modelling designed to address the overarching objective of enhancing the UK's capability to detect, attribute and predict changes in the North Atlantic (NA) Climate System, comprising: the North Atlantic Ocean, the atmosphere above it including its composition, and interactions with Arctic Sea Ice and the Greenland Ice Sheet. Specific objectives are:\r\n1. To provide the UK science community with sustained observations, data syntheses, leading-edge numerical simulations, and analysis tools, to facilitate world-class research on changes in the NA climate system and their impacts.\r\n2. To provide a quantitative, multivariate, description of how the NA climate system is changing.\r\n3. To determine the primary drivers and processes that are shaping change in the NA climate system now and will shape change in the near future.\r\n4. To determine the extent to which future changes in the NA climate system are predictable.\r\nACSIS enabled and delivered research to address the following research questions:\r\nRQ1. How have changes in natural and anthropogenic emissions and atmospheric circulation combined to shape multiyear trends in NA atmospheric composition and radiative forcing?\r\nRQ2. How have natural variability and radiative forcing combined to shape multi- year trends in the NA physical climate system?\r\nRQ3. 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Many observed changes are unprecedented in instrumental records. Changes in the NA directly affect the UK’s climate, weather and air quality, with major economic impacts on agriculture, fisheries, water, energy, transport and health. The NA also has global importance, since changes here drive changes in climate, hazardous weather and air quality further afield, such as in North America, Africa and Asia.\r\n\r\nACSIS (the North Atlantic Climate System Integrated Study) was an integrated programme of sustained observations, synthesis, and numerical modelling designed to address the overarching objective of enhancing the UK's capability to detect, attribute and predict changes in the North Atlantic (NA) Climate System, comprising: the North Atlantic Ocean, the atmosphere above it including its composition, and interactions with Arctic Sea Ice and the Greenland Ice Sheet. Specific objectives are:\r\n1. To provide the UK science community with sustained observations, data syntheses, leading-edge numerical simulations, and analysis tools, to facilitate world-class research on changes in the NA climate system and their impacts.\r\n2. To provide a quantitative, multivariate, description of how the NA climate system is changing.\r\n3. To determine the primary drivers and processes that are shaping change in the NA climate system now and will shape change in the near future.\r\n4. To determine the extent to which future changes in the NA climate system are predictable.\r\nACSIS enabled and delivered research to address the following research questions:\r\nRQ1. How have changes in natural and anthropogenic emissions and atmospheric circulation combined to shape multiyear trends in NA atmospheric composition and radiative forcing?\r\nRQ2. How have natural variability and radiative forcing combined to shape multi- year trends in the NA physical climate system?\r\nRQ3. 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