Project Grant 2529799
- This four-year, $565,121 project grant from the National Science Foundation Division of Polar Programs, under the Polar Programs federal grant program (CFDA 47.078), will fund collaborative research at the University of Alaska Fairbanks to improve understanding of outlet glacier dynamics in Greenland. The researchers will combine new field observations at a large marine-terminating outlet glacier with satellite data analysis and numerical modeling to disentangle the relative influence of...
- This $155,602 project grant from the National Science Foundation Division of Polar Programs, under the Polar Programs federal grant program (CFDA 47.078), will fund research to improve understanding of outlet glacier dynamics in Greenland. The University of Alaska Southeast will collaborate with other researchers to analyze new field observations and satellite data on runoff-driven and terminus-driven velocity variations at a large marine-terminating outlet glacier. Multivariate statistical...
- This Project Grant award for $372,486, provided by the National Science Foundation's (NSF) Polar Programs (CFDA 47.078), supports collaborative research to quantify and improve the understanding of real-world ice-ocean interaction processes at the ice-ocean interface of marine-terminating glaciers in Greenland. The research aims to directly measure submarine melt rates and near-ice boundary-layer dynamics to enhance the accuracy of next-generation climate models and improve predictions of ice...
- The National Science Foundation's Polar Programs (CFDA 47.078) awarded a $160,021 Project Grant to Trustees of Tufts College for the "Collaborative Research: Greenfjord-Fiber, Observing the Ice-Ocean Interface with Exceptional Resolution" project. This 2-year scientific study, running from April 2025 to March 2027, aims to use high-tech measurements to better understand how Greenlandic glaciers flowing into the ocean change between winter and summer. The key products to be delivered...
- The National Science Foundation awarded a $269,223 Project Grant to the University of Texas at Austin from the Polar Programs federal grant program (CFDA 47.078) to support research titled "Collaborative Research: Machine-Enabled Modeling of Terminus Ablation for Greenland's Outlet Glaciers." The research aims to improve projections of sea-level rise from Greenland through developing physics-based modeling of ice-ocean interactions at outlet glaciers using machine learning analysis...
- The National Science Foundation (NSF) Division of Polar Programs awarded a $133,492 Project Grant to the University of Florida (UF), through its Division of Sponsored Research, to conduct collaborative research on quantifying the effect of moraine building on the stability of Greenland tidewater glaciers. The project aims to collect observations from the fronts of three Greenland outlet glaciers to determine if the deposition of sediment at the ice-ocean boundary is responsible for the...
- The National Science Foundation Division of Polar Programs awarded a $990,272 project grant to The Trustees of Columbia University in New York City to support 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 to August 31, 2025. The research aims to strengthen understanding of the Greenland Ice Sheet and its response to...
- This $346,823 Project Grant award from the National Science Foundation (NSF) Division of Polar Programs, CFDA 47.078, supports research to advance understanding of meltwater flow through glacial firn on the Juneau Icefield in Alaska. The research team at the University of Colorado will: (1) measure changes in surface melt and firn properties critical to firn hydrology, and (2) apply novel water-isotope stratigraphy techniques to determine timing and variability of meltwater infiltration. This...
- This $127,350 project grant from the National Science Foundation Division of Polar Programs, under the Polar Programs federal grant program (CFDA 47.078), will support collaborative research to improve modeling of terminus ablation for Greenland's outlet glaciers. The researchers will use machine learning to analyze glaciological observations and better understand the variables influencing the ice-ocean boundary. They will develop an equation to represent ice-ocean interactions in an ice sheet...
- The National Science Foundation Division of Polar Programs awarded a $1.89 million Project Grant to The Research Foundation For The State University Of New York to support the collaborative research project "COLLABORATIVE RESEARCH: GRATE - INTEGRATING DATA AND MODELING TO QUANTIFY RATES OF GREENLAND ICE SHEET CHANGE, HOLOCENE TO FUTURE" from September 1, 2021 through August 31, 2025. This award will fund research under the official federal grant program titled "Polar...
COLLABORATIVE RESEARCH: DISENTANGLING RUNOFF- AND TERMINUS-DRIVEN VELOCITY VARIATIONS OF FAST FLOWING OUTLET GLACIERS -ICE LOSS FROM THE POLAR ICE SHEETS IS THE LARGEST ANTICIPATED CONTRIBUTION TO GLOBAL MEAN-SEA-LEVEL RISE IN THE COMING CENTURY. A FUNDAMENTAL CONTROL ON THE RATE OF ICE LOSS IS HOW FAST ICE FLOWS FROM ICE SHEET INTERIORS OUT TO THE EDGES. IN THE INTERIOR OF THE GREENLAND ICE SHEET, ICE FLOW RESPONDS TO LIQUID WATER (?RUNOFF) INPUT, WHICH AFFECTS HOW THE ICE SLIDES OVER THE BEDROCK BENEATH. AT OCEAN-TERMINATING OUTLET GLACIERS? AROUND THE EDGES OF GREENLAND, ICE FLOWS INTO THE OCEAN WITH SPEED THAT VARIES BY SEASON. THAT STRONG SEASONAL VARIATION MAKES IT MORE DIFFICULT TO DETERMINE THE EXTENT TO WHICH LIQUID WATER INPUT IS AFFECTING THE FLOW SPEED. IDENTIFYING THE RELATIVE STRENGTH OF OCEAN-DRIVEN VERSUS MELT-DRIVEN ICE FLOW VARIATIONS IS ESSENTIAL FOR COMPUTER MODELS USED TO FORECAST FUTURE ICE LOSS. IT HAS BEEN DIFFICULT TO ASSESS THOSE FACTORS IN A CONSISTENT WAY BECAUSE THEY OPERATE OVER MULTIPLE TIME SCALES, THUS REQUIRING DIFFERENT METHODS OF OBSERVATION THAT COULD NOT BE DIRECTLY COMPARED. THIS PROPOSAL SEEKS TO ADDRESS THREE KEY MOTIVATING QUESTIONS: (Q1) HOW DOES RUNOFF AFFECT OUTLET GLACIER FLOW OVER TIMESCALES OF HOURS TO YEARS?; (Q2) HOW DOES GLACIER GEOMETRY AFFECT THE RESPONSE TO RUNOFF?; AND (Q3) HOW DO RUNOFF- AND TERMINUS-DRIVEN VELOCITY VARIATIONS INTERACT? TO ADDRESS THESE QUESTIONS, THE PIS WILL COMBINE NEW FIELD OBSERVATIONS AT A LARGE MARINE-TERMINATING OUTLET GLACIER WITH NEWLY AVAILABLE SATELLITE DATA FROM MULTIPLE SOURCES, USING RECENTLY DEVELOPED METHODS FOR FLEXIBLE TIME SERIES ANALYSIS. MULTIVARIATE STATISTICAL ANALYSIS AND IDEALIZED NUMERICAL MODEL EXPERIMENTS WILL TEST HYPOTHESIZED FEEDBACKS BETWEEN RUNOFF-DRIVEN AND TERMINUS-DRIVEN CHANGES, AS WELL AS CONNECT THE OBSERVATIONAL WORK TO MORE GENERAL SETTINGS. THE PIS WILL DEVELOP OPEN-SOURCE SOFTWARE THAT ALLOWS OTHER RESEARCHERS TO REPLICATE THEIR ANALYSIS FOR REMOTE-SENSING AND IN SITU DATA OBTAINED ON ANY GLACIER. MUSEUM PROFESSIONALS ON THE TEAM WILL COORDINATE WITH THE PIS TO DEVELOP A SPECIAL EXHIBIT ON THE DRIVERS OF ARCTIC GLACIER CHANGE; AFTER INITIAL INSTALLATION AT THE UNIVERSITY OF ALASKA MUSEUM OF THE NORTH, THE EXHIBIT WILL BE MADE AVAILABLE TO TOUR OTHER ARCTIC MUSEUMS. 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.- SUBAWARDS ARE NOT PLANNED FOR THIS AWARD.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $157.6k | 6/13/25 |