Project Grant 2503985
- The U.S. National Science Foundation (NSF) awarded a $464,646 Geosciences program (CFDA 47.050) project grant to the University of Wyoming (UW) to study the magnitude and drivers of past droughts in the headwaters of the Snake, Colorado, and Missouri Rivers. The project aims to quantify changes in precipitation, evaporation, and snowmelt processes in the Rocky Mountains over the past 15,000 years since the last ice age. This research will provide robust benchmarks for evaluating changes to...
- The National Science Foundation (NSF) awarded a $303,942 Project Grant under the Geosciences program (CFDA 47.050) to the University of Arizona, doing business as the Arizona Board of Regents, to conduct collaborative research on assessing past and future droughts in the Colorado River Basin. The primary objectives of this 3-year project are to: 1) extend tree-ring reconstructions of drought in the Colorado River Basin back 2,000 years, 2) characterize the severe drought that occurred in the 2nd...
- This National Science Foundation Geosciences Program (CFDA 47.050) award of $258,917 to Northern Arizona University supports collaborative research to assess past and future droughts in the Colorado River Basin over the past 2,000 years. The project will extend tree-ring reconstructions of drought and combine them with other geological records to characterize the intensity and persistence of past droughts, including a potentially severe drought in the 2nd century. This research aims to inform...
- This $599,998 National Science Foundation award under the Geosciences program (CFDA 47.050) will fund research to estimate the emergence of anthropogenic climate change signals in snow water resource metrics in mountainous regions. Led by researchers at the University of Colorado Boulder, the project will use an innovative modeling framework including a large ensemble climate model and process-based hydrological modeling. It aims to strengthen understanding of when and how much climate change...
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) provides $199,294 to the University of Tennessee to quantify the impact of warming-induced changes in seasonal snowpack and streamflow in the Columbia River Basin over the past 500 years. The project will use tree-ring measurements to reconstruct daily streamflow data, which will help improve water management for agriculture, ecosystems, and populations in the basin. The effort will support one...
- This Project Grant from the National Science Foundation Division of Earth Sciences, under the Geosciences program (CFDA 47.050), provides $675,290 to Cornell University to estimate the emergence of anthropogenic warming signals in snow water resource metrics in mountainous regions. Working in the headwaters of the Upper Colorado River Basin, the grantee will use an innovative modeling framework with a large ensemble climate model and process-based hydrological modeling to assess the...
- The National Science Foundation (NSF) awarded a $399,996 Project Grant under the Geosciences program (CFDA 47.050) to the Trustees of the Colorado School of Mines (CSM) to conduct collaborative research on identifying non-linearities in rainfall and river responses to consecutive Paleogene global warming events. This 3-year project, starting September 1, 2025, aims to advance fundamental understanding of how rainfall patterns and river systems respond to a changing climate by collecting new...
- The National Science Foundation's Geosciences Program (CFDA 47.050) awarded a $248,117 Project Grant to the University of Illinois to conduct collaborative research on quantifying warming-induced seasonal streamflow changes in the Columbia River basin over the past 500 years. The project will use a novel combination of statistical and modeling techniques, as well as measurements of tree ring archives, to reconstruct daily streamflow patterns and better understand the impacts of changing snowpack...
- This $270,754 Project Grant award from the National Science Foundation's (NSF) Biological Sciences program supports collaborative research to investigate the impacts of the ongoing megadrought in the American West on soil moisture, ecosystem carbon-water cycling, and remote sensing capabilities. The research team, led by the Trustees of Indiana University, will synthesize hundreds of long-term soil moisture measurements with remotely-sensed data and eddy covariance tower observations to...
- The National Science Foundation awarded a $542,834 Project Grant to the University of Arizona under the Geosciences program (CFDA 47.050) to conduct collaborative research reconstructing Southern Rocky Mountains warm season temperatures over the past 2,000 years. The research aims to develop a temperature reconstruction using bristlecone pine from the Rio Grande headwaters region, augmented with updated hydroclimate reconstructions, to evaluate long-term regional temperature and hydroclimate...
COLLABORATIVE RESEARCH: WARMING AND DROUGHT IN THE CRITICAL HEADWATERS OF THE SNAKE, COLORADO, AND MISSOURI RIVERS SINCE THE LAST DEGLACIATION -ONGOING AND FUTURE DROUGHTS THREATEN THE WATER SUPPLY OF THE AMERICAN WEST BY REDUCING THE FLOWS OF THE THREE MAJOR RIVER BASINS OF THE WESTERN UNITED STATES: THE SNAKE-COLUMBIA, GREEN-COLORADO, AND MISSOURI RIVERS. CURRENT SUPPLIES ONLY MEET 80% OF WATER DEMAND IN RAPIDLY GROWING STATES LIKE COLORADO, BUT REDUCED PRECIPITATION, SHIFTS FROM SNOW TO RAIN, ACCELERATED SPRING SNOWMELT, AND INCREASED EVAPORATION CAN FURTHER AMPLIFY THE LONG-STANDING CHALLENGE OF WESTERN WATER RESOURCE MANAGEMENT. GEOLOGICAL EVIDENCE FROM PAST CENTURIES AND MILLENNIA INDICATE THAT THE REGION CAN BECOME SUBSTANTIALLY DRIER THAN TODAY. FURTHERMORE, THE CURRENT GENERATION OF MODELS USED TO FORECAST THE WATER SUPPLY FAIL TO SIMULATE THE APPARENT SEVERITY OF PAST DRY PERIODS, RAISING THE ALARMING POSSIBILITY THAT THEY WILL DRAMATICALLY UNDERESTIMATE FUTURE WATER SUPPLIES VITAL TO MAJOR URBAN AREAS, AGRICULTURE AND ENERGY SECTORS, AND ICONIC ECOSYSTEMS. THERE IS THUS A PRESSING NEED FOR ROBUST CONSTRAINTS ON HOW DRY THE HEADWATERS OF THE THREE MAJOR WESTERN RIVERS CAN BECOME. TO DO SO, THIS PROJECT WILL STUDY THE MAGNITUDE AND DRIVERS OF ARIDITY IN THE ROCKY MOUNTAINS OVER THE 15,000 YEARS SINCE THE LAST ICE AGE. PUBLIC COMMUNICATION OF THE SCIENTIFIC FINDINGS WILL INCLUDE COORDINATION WITH GRAND TETON NATIONAL PARK, WHERE TWO OF THE STUDY SITES ARE LOCATED, AND K-12 TEACHERS AND STUDENTS THROUGH THE TETON SCIENCE SCHOOL. THE PROJECT WILL QUANTIFY PAST CHANGES IN PRECIPITATION, EVAPORATION, AND OTHER PROCESSES (SNOWMELT) IN THE MOUNTAINS OF WYOMING AND COLORADO TO CREATE ROBUST BENCHMARKS FOR EVALUATING CHANGES TO CRITICAL WESTERN WATER SUPPLIES. TO TEST HYPOTHESES REGARDING 1) THE SEVERITY AND PATTERNING OF PAST DROUGHTS, 2) THEIR DRIVING FACTORS, AND 3) DIFFERENCES AMONG EXISTING LINES OF EVIDENCE, THE WORK WILL USE GEOLOGICAL EVIDENCE FROM PAIRS OF LOW- AND HIGH-ELEVATION LAKE FROM ACROSS THE ?TRIPLE CROWN? HEADWATERS OF THE SNAKE, GREEN, AND MISSOURI RIVERS. THE STUDY DESIGN WILL EVALUATE PAST SHIFTS IN TOPOGRAPHIC AND LATITUDINAL MOISTURE GRADIENTS ACROSS THE HEADWATER WATERSHEDS. THE WORK WILL USE ANALYSES OF SEDIMENT CORES FROM THE LAKES TO RECONSTRUCT PAST WATER LEVELS, WATER TEMPERATURES, AND THE HYDROGEN AND OXYGEN ISOTOPIC SIGNATURES OF KEY HYDROLOGIC PROCESSES. THIS AWARD IS CO-FUNDED BY THE DIVISION OF EARTH SCIENCES AND THE DIVISION OF ATMOSPHERIC AND GEOSPACE SCIENCES. 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 | $95.6k | 8/4/25 |