Attributes { SI_25km_NH_06V_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_06V_ASC"; } SI_25km_NH_06V_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_06V_DSC"; } SI_25km_NH_06V_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_06V_DAY"; } SI_25km_NH_06H_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_06H_ASC"; } SI_25km_NH_06H_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_06H_DSC"; } SI_25km_NH_06H_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_06H_DAY"; } SI_25km_NH_10V_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_10V_ASC"; } SI_25km_NH_10V_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_10V_DSC"; } SI_25km_NH_10V_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_10V_DAY"; } SI_25km_NH_10H_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_10H_ASC"; } SI_25km_NH_10H_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_10H_DSC"; } SI_25km_NH_10H_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_10H_DAY"; } SI_25km_NH_18V_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_18V_ASC"; } SI_25km_NH_18V_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_18V_DSC"; } SI_25km_NH_18V_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_18V_DAY"; } SI_25km_NH_18H_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_18H_ASC"; } SI_25km_NH_18H_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_18H_DSC"; } SI_25km_NH_18H_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_18H_DAY"; } SI_25km_NH_23V_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_23V_ASC"; } SI_25km_NH_23V_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_23V_DSC"; } SI_25km_NH_23V_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_23V_DAY"; } SI_25km_NH_23H_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_23H_ASC"; } SI_25km_NH_23H_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_23H_DSC"; } SI_25km_NH_23H_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_23H_DAY"; } SI_25km_NH_36V_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_36V_ASC"; } SI_25km_NH_36V_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_36V_DSC"; } SI_25km_NH_36V_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_36V_DAY"; } SI_25km_NH_36H_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_36H_ASC"; } SI_25km_NH_36H_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_36H_DSC"; } SI_25km_NH_36H_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_36H_DAY"; } SI_25km_NH_89V_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_89V_ASC"; } SI_25km_NH_89V_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_89V_DSC"; } SI_25km_NH_89V_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_89V_DAY"; } SI_25km_NH_89H_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_89H_ASC"; } SI_25km_NH_89H_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_89H_DSC"; } SI_25km_NH_89H_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_89H_DAY"; } SI_25km_NH_ICECON_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_ICECON_ASC"; } SI_25km_NH_ICECON_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_ICECON_DSC"; } SI_25km_NH_ICECON_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_ICECON_DAY"; } SI_25km_NH_ICEDIFF_ASC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_ICEDIFF_ASC"; } SI_25km_NH_ICEDIFF_DSC { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_ICEDIFF_DSC"; } SI_25km_NH_ICEDIFF_DAY { String coordinates "Latitude Longitude"; String long_name "NpPolarGrid25km:SI_25km_NH_ICEDIFF_DAY"; } Latitude { String long_name "NpPolarGrid25km:Latitude"; String units "degrees_north"; } Longitude { String long_name "NpPolarGrid25km:Longitude"; String units "degrees_east"; } SI_25km_SH_06V_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_06V_ASC"; } SI_25km_SH_06V_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_06V_DSC"; } SI_25km_SH_06V_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_06V_DAY"; } SI_25km_SH_06H_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_06H_ASC"; } SI_25km_SH_06H_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_06H_DSC"; } SI_25km_SH_06H_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_06H_DAY"; } SI_25km_SH_10V_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_10V_ASC"; } SI_25km_SH_10V_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_10V_DSC"; } SI_25km_SH_10V_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_10V_DAY"; } SI_25km_SH_10H_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_10H_ASC"; } SI_25km_SH_10H_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_10H_DSC"; } SI_25km_SH_10H_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_10H_DAY"; } SI_25km_SH_18V_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_18V_ASC"; } SI_25km_SH_18V_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_18V_DSC"; } SI_25km_SH_18V_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_18V_DAY"; } SI_25km_SH_18H_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_18H_ASC"; } SI_25km_SH_18H_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_18H_DSC"; } SI_25km_SH_18H_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_18H_DAY"; } SI_25km_SH_23V_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_23V_ASC"; } SI_25km_SH_23V_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_23V_DSC"; } SI_25km_SH_23V_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_23V_DAY"; } SI_25km_SH_23H_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_23H_ASC"; } SI_25km_SH_23H_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_23H_DSC"; } SI_25km_SH_23H_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_23H_DAY"; } SI_25km_SH_36V_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_36V_ASC"; } SI_25km_SH_36V_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_36V_DSC"; } SI_25km_SH_36V_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_36V_DAY"; } SI_25km_SH_36H_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_36H_ASC"; } SI_25km_SH_36H_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_36H_DSC"; } SI_25km_SH_36H_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_36H_DAY"; } SI_25km_SH_89V_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_89V_ASC"; } SI_25km_SH_89V_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_89V_DSC"; } SI_25km_SH_89V_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_89V_DAY"; } SI_25km_SH_89H_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_89H_ASC"; } SI_25km_SH_89H_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_89H_DSC"; } SI_25km_SH_89H_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_89H_DAY"; } SI_25km_SH_ICECON_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_ICECON_ASC"; } SI_25km_SH_ICECON_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_ICECON_DSC"; } SI_25km_SH_ICECON_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_ICECON_DAY"; } SI_25km_SH_ICEDIFF_ASC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_ICEDIFF_ASC"; } SI_25km_SH_ICEDIFF_DSC { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_ICEDIFF_DSC"; } SI_25km_SH_ICEDIFF_DAY { String coordinates "Latitude_1 Longitude_1"; String long_name "SpPolarGrid25km:SI_25km_SH_ICEDIFF_DAY"; } Latitude_1 { String long_name "SpPolarGrid25km:Latitude"; String units "degrees_north"; } Longitude_1 { String long_name "SpPolarGrid25km:Longitude"; String units "degrees_east"; } CoreMetadata { INVENTORYMETADATA { String GROUPTYPE "MASTERGROUP"; ECSDATAGRANULE { LOCALGRANULEID { Int32 NUM_VAL 1; String VALUE "\"AMSR_E_L3_SeaIce25km_V15_20050118.hdf\""; } PRODUCTIONDATETIME { Int32 NUM_VAL 1; String VALUE "\"2014-07-16T08:33:57Z\""; } REPROCESSINGACTUAL { Int32 NUM_VAL 1; String VALUE "\"reprocessed twice\""; } } MEASUREDPARAMETER { MEASUREDPARAMETERCONTAINER { String CLASS "\"1\""; PARAMETERNAME { Int32 NUM_VAL 1; String CLASS "\"1\""; String VALUE "\"Sea Ice Parameters\""; } QAFLAGS { String CLASS "\"1\""; AUTOMATICQUALITYFLAG { Int32 NUM_VAL 1; String CLASS "\"1\""; String VALUE "\"Passed\""; } AUTOMATICQUALITYFLAGEXPLANATION { Int32 NUM_VAL 1; String CLASS "\"1\""; String VALUE "\"Program Execution Completed\""; } OPERATIONALQUALITYFLAG { Int32 NUM_VAL 1; String CLASS "\"1\""; String VALUE "\"Not Investigated\""; } OPERATIONALQUALITYFLAGEXPLANATION { Int32 NUM_VAL 1; String CLASS "\"1\""; String VALUE "\"Currently not used\""; } SCIENCEQUALITYFLAG { Int32 NUM_VAL 1; String CLASS "\"1\""; String VALUE "\"Passed\""; } SCIENCEQUALITYFLAGEXPLANATION { Int32 NUM_VAL 1; String CLASS "\"1\""; String VALUE "\"Mask files are recent\""; } } QASTATS { String CLASS "\"1\""; QAPERCENTMISSINGDATA { Int32 NUM_VAL 1; String CLASS "\"1\""; Int32 VALUE 0; } QAPERCENTOUTOFBOUNDSDATA { Int32 NUM_VAL 1; String CLASS "\"1\""; Int32 VALUE 0; } } } } COLLECTIONDESCRIPTIONCLASS { SHORTNAME { Int32 NUM_VAL 1; String VALUE "\"AE_SI25\""; } VERSIONID { Int32 NUM_VAL 1; Int32 VALUE 3; } } INPUTGRANULE { INPUTPOINTER { Int32 NUM_VAL 29; String VALUE "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501180027_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501180116_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501180206_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501180255_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501180345_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501180434_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501180523_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501180613_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501180702_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501180752_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501180841_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501180931_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501181020_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501181109_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501181159_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501181248_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501181338_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501181427_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501181517_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501181606_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501181656_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501181745_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501181834_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501181924_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501182013_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501182103_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501182152_D.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501182242_A.hdf\"", "\"AMSR_E_L2A_BrightnessTemperatures_V12_200501182331_D.hdf\""; } } SPATIALDOMAINCONTAINER { HORIZONTALSPATIALDOMAINCONTAINER { BOUNDINGRECTANGLE { WESTBOUNDINGCOORDINATE { Int32 NUM_VAL 1; Float64 VALUE -180.0; } NORTHBOUNDINGCOORDINATE { Int32 NUM_VAL 1; Float64 VALUE 90.0; } EASTBOUNDINGCOORDINATE { Int32 NUM_VAL 1; Float64 VALUE 180.0; } SOUTHBOUNDINGCOORDINATE { Int32 NUM_VAL 1; Float64 VALUE -90.0; } } } } RANGEDATETIME { RANGEBEGINNINGDATE { Int32 NUM_VAL 1; String VALUE "\"2005-01-18\""; } RANGEBEGINNINGTIME { Int32 NUM_VAL 1; String VALUE "\"00:27:15.30Z\""; } RANGEENDINGDATE { Int32 NUM_VAL 1; String VALUE "\"2005-01-19\""; } RANGEENDINGTIME { Int32 NUM_VAL 1; String VALUE "\"00:21:30.03Z\""; } } PGEVERSIONCLASS { PGEVERSION { Int32 NUM_VAL 1; String VALUE "\"15\""; } } ADDITIONALATTRIBUTES { ADDITIONALATTRIBUTESCONTAINER { String CLASS "\"1\"", "\"2\""; ADDITIONALATTRIBUTENAME { String CLASS "\"1\"", "\"2\""; Int32 NUM_VAL 1, 1; String VALUE "\"identifier_product_doi\"", "\"identifier_product_doi_authority\""; } INFORMATIONCONTENT { String CLASS "\"1\"", "\"2\""; PARAMETERVALUE { Int32 NUM_VAL 1, 1; String CLASS "\"1\"", "\"2\""; String VALUE "\"10.5067/AMSR-E/AE_SI25.003\"", "\"http://dx.doi.org\""; } } } } } } HDF_GLOBAL { String HDFEOSVersion "HDFEOS_V2.14"; String ISOLineageMetadata_00 " dataset 2014-07-16T08:33:57Z AMSR-E Science Investigator-led Processing System at the Global Hydrology Resource Center (AMSR-E SIPS at GHRC), Huntsville, AL USA ghrcdaac@itsc.uah.edu processor AMSR_E_L2A_BrightnessTemperatures_V12_200501180027_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501180116_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501180206_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501180255_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501180345_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501180434_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501180523_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501180613_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501180702_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501180752_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501180841_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501180931_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501181020_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501181109_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501181159_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501181248_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501181338_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501181427_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501181517_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501181606_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501181656_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501181745_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501181834_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501181924_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501182013_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501182103_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501182152_D.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501182242_A.hdf AMSR_E_L2A_BrightnessTemperatures_V12_200501182331_D.hdf @L3seaice processing_host=\"amsr1\" processing_environment=\"Reprocessing\" AMSR_E_L3_SeaIce25km_V15_20050118.hdf 2014-07-16T08:33:57Z creation urn:amsr1:Reprocessing:2014-07-16T08:33:57Z:AMSR_E_L3_SeaIce25km_V15_20050118.hdf series Brightness Temperatures (TB'S) at 6.9 through 89.0 GHz and sea ice concentration are mapped to a polar stereographic grid at 25 km spatial resolution. TB's are gridded into 25 km grid cells using a drop-in-the-bucket method where the grid cell that contains the center of the observation footprint is given the whole weight of the observation. NT2 sea ice concentrations are calculated using the individual Level-2A TB's in order to make the atmospheric corrections on an orbit-by-orbit basis before obtaining daily average ice concentrations. The AMSR-E/Aqua Level-2A swath product includes brightness temperatures at 6.9 GHz, 10.7 GHz, 18.7 GHz, 23.8 GHz, 36.5 GHz, and 89.0 GHz resampled at resolutions of 56 km, 38 km, 21 km, 12 km, and 5.4 km. AMSR-E/Aqua AMSR-E/Aqua L2A Global Swath Spatially-Resampled Brightness Temperatures doi:10.5067/AMSR-E/AE_L2A.003 gov.nasa.esdis Digital Object Identifier (DOI) Coastal boundaries in the northern hemisphere. coast_north.hdf Coastal boundaries in the southern hemisphere. coast_south.hdf Land mask in the northern hemisphere. land_north_25.hdf Land mask in the southern hemisphere. land_south_25.hdf Sea surface temperatures in the northern hemisphere for a given month (NN, 01-12). Ice concentration pixels corresponding to sst values greater than 278 K are set to zero (open water). sst_n_NN.hdf Sea surface temperatures in the southern hemisphere for a given month (NN, 01-12). Ice concentration pixels corresponding to sst values greater than 275 K are set to zero (open water). sst_s_NN.hdf Land mask in the southern hemisphere. land_south_25.hdf AE_SI3_V15_20140215_dap.tar 20140215 lastUpdate V15 Enhanced NASA Team 2 (NT2) 2013-11-12 lastUpdate 20131112 Dr. Thorsten Markus NASA / GSFC Cryospheric Sciences Laboratory thorsten.markus@nasa.gov author Dr. Donald Cavalieri NASA / GSFC Cryospheric Sciences Laboratory donald.j.cavalieri@nasa.gov author Enhanced NASA Team 2 (NT2) sea ice concentrations are calculated using the individual Level-2A TB's. The primary source of error is attributed to conditions in the surface layer such as surface glaze and layering, which can significantly affect the horizontally polarized 18.7 GHz TB, leading to an underestimation of sea ice concentration. The NT2 algorithm uses the 89 GHz channels because the horizontally polarized 89 GHz data are less affected by surface conditions than the horizontally polarized 18.7 GHz data, and the 89 GHz channels have successfully been used in sea ice concentration retrievals under clear atmospheric conditions. As a result, this algorithm can identify more complex ice types resulting from surface glaze and layering in the snow cover. The thin-ice bias is then reduced. Bootstrap Basic Algorithm (BBA) 2013-11-12 lastUpdate 20131112 Josefino Comiso NASA / GSFC Cryospheric Sciences Laboratory josefino.c.comiso@nasa.gov author The Bootstrap Basic Algorithm (BBA) uses two sets of channels to identify consolidated ice and open water: 18.7V GHz and 37V GHz, and 37H GHz and 37V GHz. Using these channels for the retrieval of sea ice concentration ensures consistency with historical sea ice products, beginning with SMMR. The AMSR-E/Aqua Level-3 25 km daily sea ice product includes 6.9 - 89.0 GHz TBs and sea ice concentration averages (daily, ascending, and descending) on a 25 km polar stereographic grid, generated by the NT2 algorithm using Level-2A TBs. This validated version includes an updated Southern Hemisphere sea ice mask derived from National Ice Center data (June 2011) and updated flags correlating with the new mask. AMSR-E/Aqua Daily L3 25 km Tb and Sea Ice Concentration Polar Grids doi:10.5067/AMSR-E/AE_SI25.003 gov.nasa.esdis Digital Object Identifier (DOI) "; String Processing_Facility "AMSR-E Science Investigator-led Processing System at the Global Hydrology Resource Center (AMSR-E SIPS at GHRC), Huntsville, AL USA"; String DOI "10.5067/AMSR-E/AE_L2A.003 10.5067/AMSR-E/AE_SI25.003"; } }