Data · collection · 2019
NSF-NERC: THwaites Offshore Research (THOR)
Listed in NASA Earthdata CMR
This project contributes to the joint initiative launched by the U.S. National Science Foundation (NSF) and the U.K. Natural Environment Research Council (NERC) to substantially improve decadal and longer-term projections of ice loss and sea-level rise originating from Thwaites Glacier in West Antarctica.
Description
Satellite observations extending over the last 25 years show that Thwaites Glacier is rapidly thinning and accelerating.
Over this same period, the Thwaites grounding line, the point at which the glacier transitions from sitting on the seabed to floating, has retreated. Oceanographic studies demonstrate that the main driver of these changes is incursion of warm water from the deep ocean that flows beneath the floating ice shelf and causes basal melting. The period of satellite observation is not long enough to determine how a large glacier, such as Thwaites, responds to long-term and near-term changes in the ocean or the atmosphere.
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As a result, records of glacier change from the pre-satellite era are required to build a holistic understanding of glacier behavior. Ocean-floor sediments deposited at the retreating grounding line and further offshore contain these longer-term records of changes in the glacier and the adjacent ocean. An additional large unknown is the topography of the seafloor and how it influences interactions of landward-flowing warm water with Thwaites Glacier and affects its stability.
Consequently, this project focuses on the seafloor offshore from Thwaites Glacier and the records of past glacial and ocean change contained in the sediments deposited by the glacier and surrounding ocean. Uncertainty in model projections of the future of Thwaites Glacier will be significantly reduced by cross-disciplinary investigations seaward of the current grounding line, including extracting the record of decadal to millennial variations in warm water incursion, determining the pre-satellite era history of grounding-line migration, and constraining the bathymetric pathways that control flow of warm water to the grounding line.
Sedimentary records and glacial landforms preserved on the seafloor will allow reconstruction of changes in drivers and the glacial response to them over a range of timescales, thus providing reference data that can be used to initiate and evaluate the reliability of models. Such data will further provide insights on the influence of poorly understood processes on marine ice sheet dynamics. This project will include an integrated suite of marine and sub-ice shelf research activities aimed at establishing boundary conditions seaward of the Thwaites Glacier grounding line, obtaining records of the external drivers of change, improving knowledge of processes leading to collapse of Thwaites Glacier, and determining the history of past change in grounding line migration and conditions at the glacier base.
These objectives will be achieved through high-resolution geophysical surveys of the seafloor and analysis of sediments collected in cores from the inner shelf seaward of the Thwaites Glacier grounding line using ship-based equipment, and from beneath the ice shelf using a corer deployed through the ice shelf via hot water drill holes. This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
Links
Get the data
- Expedition Data of NBP2002 rvdata.us/search/cruise/NBP2002 ↗
download · from NASA CMR
- Expedition Data of NBP2202 rvdata.us/search/cruise/NBP2202 ↗
download · from NASA CMR
- doi.org /10.1594/pangaea.964765 ↗
Clay mineralogy of sediment cores from cruise NBP19-02
download · from NASA CMR
- doi.org /10.1594/pangaea.965758 ↗
Modern benthic foraminifera census and grain-size of surface sediments offshore Thwaites Glacier, Antarctica
download · from NASA CMR
- doi.org /10.1594/pangaea.961704 ↗
MATLAB script for grain images and grain-shape metrics of glacial sediments from Antarctica
download · from NASA CMR
- doi.org /10.6084/m9.figshare.20359920.v1 ↗
Gridded AUV multibeam bathymetry data from The Bump at Thwaites Glacier
download · from NASA CMR
- cambridge.org /core/journals/antarctic-science/article/geological-insights-fr… ↗
Suppl. data for Geological Insights from the Newly Discovered Granite of Sif Island
download · from NASA CMR
- doi.org /10.1016/j.marchem.2023.104250 ↗
suppl. data for Volcanogenic fluxes of iron from the seafloor in the Amundsen Sea, West Antarctica
download · from NASA CMR
- osu-mgr.org /collections ↗
Sediment cores and samples from Expedition NBP1902
download · from NASA CMR
- marine-geo.org /tools/search/entry.php?id=NBP1902 ↗
Processed multibeam bathymetry and expedition data from NBP1902
download · from NASA CMR
- Processed multibeam bathymetry data from NBP2002 marine-geo.org/tools/search/entry.php?id=NBP2002 ↗
download · from NASA CMR
- usap-dc.org /view/dataset/601514 ↗
Physical and geochemical data from sediment cores collected offshore Thwaites Glacier
download · from NASA CMR
- doi.org /10.5285/f2dfeda9-bf44-4ef5-89a3-ee5e434a385c ↗
A multibeam-bathymetric compilation for the southern Amundsen Sea shelf, 1999-2019
download · from NASA CMR
- NBP1902 Expedition data rvdata.us/search/cruise/NBP1902 ↗
download · from NASA CMR
Documentation and papers
- NSF Award Abstract nsf.gov/awardsearch/showAward.do?AwardNumber=1738942 ↗
documentation · from NASA CMR
Catalogue records · 2
- CMR record cmr.earthdata.nasa.gov/search/concepts/C3843361321-AMD_USAPDC.html ↗
catalogue entry · from NASA CMR
- CMR UMM-JSON cmr.earthdata.nasa.gov/search/concepts/C3843361321-AMD_USAPDC.umm_json ↗
metadata API · from NASA CMR
Topics
- Stated by source
- Bathymetry · ECHO SOUNDERS · Glaciers Ice Sheets · Ice Sheets · LABORATORY · Marine Geophysics · Marine Sediments · R/V Nathaniel B. Palmer · SEDIMENT CORERS
- Inferred from text
- Satellite remote sensing 65%
Provenance · 1 source records, 19 field assertions
| Source | Key | Last seen | Raw |
|---|---|---|---|
| NASA Earthdata CMR | C3843361321-AMD_USAPDC | 9 d ago | JSON v1 |
| Field | Assertion | Extractor | Evidence |
|---|---|---|---|
| access_level | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| concepts[instrument].gcmd_instrument:echo-sounders | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| concepts[instrument].gcmd_instrument:sediment-corers | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| concepts[measured_variable].gcmd:earth-science/cryosphere/glaciers-ice-sheets | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| concepts[measured_variable].gcmd:earth-science/cryosphere/glaciers-ice-sheets/ice-sheets | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| concepts[measured_variable].gcmd:earth-science/oceans/bathymetry-seafloor-topography/bathymetry | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| concepts[measured_variable].gcmd:earth-science/oceans/marine-geophysics | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| concepts[measured_variable].gcmd:earth-science/oceans/marine-sediments | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| concepts[modality].local:modality:remote-sensing | enrichment · NASA CMR | keyword-concept-rules@1.0.0 | title+description (65%) |
| concepts[platform].gcmd_platform:laboratory | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| concepts[platform].gcmd_platform:r-v-nbp | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| created_date | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| description | source · NASA CMR | connector:nasa_cmr@1.0.0 | /umm/Abstract |
| publication_date | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| spatial | source · NASA CMR | connector:nasa_cmr@1.0.0 | /umm/SpatialExtent |
| temporal | source · NASA CMR | connector:nasa_cmr@1.0.0 | /umm/TemporalExtents |
| title | source · NASA CMR | connector:nasa_cmr@1.0.0 | /umm/EntryTitle |
| updated_date | source · NASA CMR | connector:nasa_cmr@1.0.0 | |
| version_label | source · NASA CMR | connector:nasa_cmr@1.0.0 |