SMOS-CryoSat L4 Sea Ice Thickness 2016
The SMOS-CryoSat merged Sea Ice Thickness Level 4 product, in NetCDF format, is based on estimates from both the MIRAS and the SIRAL instruments, with a significant reduction in the relative uncertainty for the thickness of the thin ice. A weekly averaged product is generated every day by the Alfred Wegener Institut (AWI), by merging the weekly AWI CryoSat-2 sea ice product and the daily SMOS sea ice thickness retrieval. All grids are projected onto the 25 km EASE2 Grid, based on a polar aspect spherical Lambert azimuthal equal-area projection. The grid dimension is 5400 x 5400 km, equal to a 432 x 432 grid centered on the geographic Pole. Coverage is limited to the October-April (winter) period for the Northern Hemisphere, due to the melting season, from year 2010 onwards.
Links
- CryoSat-SMOS Merged Sea Ice Thickness at the Alfred Wegener Institut (AWI) - Website (describedby)
- CryoSat-SMOS Merged Sea Ice Thickness Products Description Document (PDD) - Product Specifications (describedby)
- Read-me-first note for the release of CryoSat-SMOS Merged Sea Ice Thickness - Product Specifications (describedby)
- CryoSat-SMOS Merged Product Algorithm Theoretical Basis Document (ATBD) - Algorithm Theoretical Baseline Document (describedby)
- SMOS Software Tools - Software Tools (describedby)
- Get Help? - ESA Earth Observation User Services Portal (describedby)
- Atom format (alternate)
- Dublin Core metadata (alternate)
- JSON-LD metadata (alternate)
- JSON-LD (schema.org) metadata (alternate)
- JSON-LD (GeoDCAT-AP) metadata (alternate)
- RDF/XML metadata (alternate)
- RDF/XML (schema.org) metadata (alternate)
- RDF/XML (GeoDCAT-AP) metadata (alternate)
- Turtle metadata (alternate)
- Turtle (schema.org) metadata (alternate)
- Turtle (GeoDCAT-AP) metadata (alternate)
- 2016-01 (child)
- 2016-02 (child)
- 2016-03 (child)
- 2016-04 (child)
- 2016-05 (child)
- 2016-06 (child)
- 2016-07 (child)
- 2016-08 (child)
- 2016-09 (child)
- 2016-10 (child)
- 2016-11 (child)
- 2016-12 (child)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20160318_20160324_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20160321_20160327_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20160330_20160405_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20160307_20160313_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20160308_20160314_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20160313_20160319_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20160325_20160331_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161018_20161024_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161016_20161022_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161020_20161026_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161030_20161105_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161102_20161108_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161115_20161121_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161116_20161122_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161109_20161115_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161113_20161119_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161121_20161127_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161103_20161109_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161130_20161206_r_v206_01_l4sit.nc (item)
- W_XX-ESA,SMOS_CS2,NH_25KM_EASE2_20161216_20161222_r_v206_01_l4sit.nc (item)
- First items (first)
- Next items (next)
- Previous items (previous)
- Last items (last)