This $870,804 federal Project Grant award from the National Science Foundation's (NSF) Polar Programs (CFDA 47.078) will support a 5-year research project at the University of Washington focused on improving the representation of small-scale sea ice processes in climate models. The key objectives are to refine the modeling of sea ice deformation and fractures at the floe scale, and establish connections between these small-scale dynamics and larger-scale sea ice behavior. This will involve a...
This National Science Foundation project grant of $401,241 will fund research at the University of Washington from May 2022 through April 2025 to advance understanding of Arctic sea ice interactions with tropospheric polar vortices and cyclones. The grant was awarded under the Polar Programs federal grant program (CFDA 47.078), which supports basic research in polar regions. Specifically, the researchers will investigate coupling between tropospheric polar vortices, Arctic cyclones, and...
This three-year, $411,911 National Science Foundation Division of Polar Programs project grant will fund research to advance sea ice floe-size distribution and wave-ice interaction modeling capabilities within fully-coupled Earth system models. The University of Washington will receive funding to incorporate prognostic floe-size distribution components into widely-used sea ice and wave models, and parameterize wave attenuation in sea ice through data assimilation methods. Model code improvements...
This $304,752 National Science Foundation Division of Polar Programs award will fund research to improve climate model simulations of sea ice physics and feedbacks through analysis of observations from the Multidisciplinary Drifting Observatory for the Study of Arctic Climate field campaign. The University of Washington will integrate spatially and temporally coordinated field observations with single column and global climate modeling to develop parameterizations that more accurately...
This Project Grant award from the National Science Foundation Division of Polar Programs (CFDA 47.078) provides $161,000.00 to the University of Washington to conduct collaborative research assessing the causal influence of atmospheric opacity (i.e., clouds) and sea ice on Arctic warming over the period 1980 to 2060. The research will leverage a well-established NSF-funded Earth System Model and observations, including data from the recent MOSAIC field campaign, to quantify how these factors...
This $239,286 Project Grant award from the National Science Foundation's Polar Programs (CFDA 47.078) will fund the "Sikumiut: An Utqiagvik Sea Ice Field School" at the University of Washington. The project aims to bring together indigenous knowledge holders, numerical modelers, remote sensing experts, and field observers to collaboratively learn about and share knowledge on Arctic sea ice changes. Key activities include a virtual seminar series, a 1-week field school in Utqiagvik,...
The University of Washington was awarded a $983,607 Project Grant from the National Science Foundation Division of Polar Programs to conduct research titled "COLLABORATIVE RESEARCH: GRATE ? INTEGRATING DATA AND MODELING TO QUANTIFY RATES OF GREENLAND ICE SHEET CHANGE, HOLOCENE TO FUTURE." The period of performance for this research is from September 1, 2021 through August 31, 2025. The grant was awarded under the NSF's Polar Programs (CFDA 47.078) to strengthen understanding of polar...
This Project Grant award from the National Science Foundation's Polar Programs (CFDA 47.078) supports collaborative research on physical processes during freeze-up of landfast ice along the coastal Alaskan Arctic region. The $497,749 award to the University of Washington will utilize observations from seafloor instruments, ships, and novel low-cost telemetered sensors to examine how waves, storms, and sediment interact during the fall freeze-up period. The goal is to improve predictions of...
This $194,921 federal Project Grant award from the National Science Foundation's Polar Programs (CFDA 47.078) will fund collaborative research to constrain and understand regional modes of variability in the Atlantic Arctic over the next two years. The overarching goal is to quantitatively study climate patterns and their long-term changes in the Atlantic Arctic and sub-Arctic regions using a variety of data sources, including meteorological measurements, historical observations, and climate...
This $513,000 Project Grant award was provided by the National Science Foundation (NSF) Division of Polar Programs from August 1, 2023 to July 31, 2026. The grant supports collaborative research by the University of Colorado to assess the causal influence of atmospheric opacity (clouds) and sea ice thickness on Arctic warming over the past 40 years and into the near future. Key deliverables include quantifying the impact of these factors on Arctic warming rates using a novel modeling approach,...