Project Grant 2529791
- This federal Project Grant award from the National Science Foundation's (NSF) Polar Programs (CFDA 47.078) provides $208,083 to support a collaborative research project at Tufts University aimed at quantifying the processes that control boundary layer transport across the ice-ocean interface of tidewater glaciers. The research will utilize a specialized underwater robot with state-of-the-art instruments to observe melt rates and the dynamics of the currents adjacent to the glacier face, as...
- This Project Grant from the National Science Foundation's $1.044 million Engineering program (CFDA 47.041) supports the development of the Robotic Iceberg Sentinel (RISE) system at the University of Rhode Island from September 1, 2022 to August 31, 2026. The RISE system will obtain accurate in-situ measurements of icebergs and surrounding water conditions to advance understanding of iceberg impacts on local and global environments. Researchers will develop iceberg-referenced localization...
- The National Science Foundation (NSF) awarded a $505,558 project grant under the Polar Programs (CFDA 47.078) to Oregon State University. The 3-year grant, which began on October 1, 2023, will support a collaborative research project to elucidate the ocean dynamics governing melt at glaciers using Lagrangian floats. The research aims to determine the physical processes causing melting at an Alaskan glacier that ends in a fjord, focusing on whether recirculating cells and waves below the...
- This Project Grant award of $231,050 from the National Science Foundation's Polar Programs (CFDA 47.078) will fund research to investigate the mechanisms that relate ocean circulation in the open ocean to ice sheet melt in Antarctica. The primary objectives are to: 1) Quantify the pathways of Circumpolar Deep Water from its origin in the Antarctic Circumpolar Current to the Antarctic continental slope, and 2) Determine the physical mechanisms that govern the variability of these pathways. The...
- This Project Grant award from the National Science Foundation (NSF) under the Polar Programs (CFDA 47.078) federal grant program provides $299,911 to the University of California San Diego's Scripps Institution of Oceanography to develop and test a new generation of autonomous ocean platforms called "wave gliders" for conducting research in harsh polar environments. The overarching objective is to enable improved understanding and quantification of fine-scale air-sea interactions in...
- This Project Grant from the National Science Foundation Division of Ocean Sciences, under the Geosciences program (CFDA 47.050), provides $298,461 to the University of California San Diego's Scripps Institution of Oceanography for the development of an autonomous underwater vehicle to measure marine snow transport. The goal of the project, running from April 1, 2023 to March 31, 2025, is to design, fabricate, and test an inexpensive (~$10K) self-ballasting underwater vehicle equipped with...
- This Project Grant from the National Science Foundation Division of Ocean Sciences provides $118,677 to support research titled "COLLABORATIVE RESEARCH: AN AUTONOMOUS PROFILING VEHICLE FOR CONCURRENT ACOUSTIC, VISUAL AND ENVIRONMENTAL MEASUREMENTS IN THE MESOPELAGIC OCEAN." The award runs from September 1, 2021 through August 31, 2024. The funding will allow researchers at Stony Brook University, working through the university's Research Foundation, to develop an autonomous...
- 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...
- This National Science Foundation Project Grant under the Geosciences program (CFDA 47.050) totaling $317,344 will fund the development of a swarm of 20 autonomous subsea vehicles to study plankton growth and transport dynamics. Oregon State University will receive the funding from August 15, 2022 to July 31, 2025. The vehicles will mimic plankton behaviors to acquire high-resolution trajectory data in three dimensions, revealing physical transport processes and environmental conditions...
- The National Science Foundation's Polar Research (CFDA 47.078) program awarded the University of Washington a $327,580 project grant to elucidate the ocean dynamics governing melt at glaciers using Lagrangian floats. The 3-year grant, awarded on October 1, 2023, will develop instruments that drift in three dimensions to study the physical processes causing melting at an Alaskan glacier ending in a fjord. The project aims to determine whether recirculating cells and waves below the sea surface...
COLLABORATIVE RESEARCH: IDEAS LAB: ETAUS MESHED OBSERVATIONS OF THE REMOTE SUBSURFACE WITH HETEROGENEOUS INTELLIGENT PLATFORMS (MOTHERSHIP) -MELTING OF ICE SHELVES BY WARM OCEAN WATERS DESTABILIZES GLACIERS, ENHANCING ICE FLOW INTO THE OCEAN AND CONTRIBUTING TO GLOBAL SEA LEVEL RISE. MEASUREMENTS OF OCEAN PROPERTIES UNDER ICE SHELVES ARE NEEDED TO IMPROVE GLOBAL PREDICTIONS OF SEA LEVEL RISE AND TO ANTICIPATE ITS SOCIETAL CONSEQUENCES. SUCH MEASUREMENTS, HOWEVER, ARE CHALLENGING TO OBTAIN. IN THIS IDEAS LAB: ENGINEERING TECHNOLOGIES TO ADVANCE UNDERWATER SCIENCES (ETAUS) PROJECT, A PROOF-OF-CONCEPT MOTHERSHIP-AND-PASSENGER SYSTEM WILL BE DEVELOPED TO PERMIT THE FUTURE DEPLOYMENT OF A HIGHLY CAPABLE, AUTONOMOUS UNDERWATER VEHICLE (THE MOTHERSHIP), PROGRAMMED TO TRAVEL AS FAR AS SAFELY POSSIBLE UNDER ICE SHELVES TO RELEASE A SWARM OF NOVEL, LOW-COST PASSENGER ROBOTS THAT WILL COORDINATE TO EXPLORE FURTHER INTO THE ICE CAVITY. THE HARDWARE PROTOTYPES, NETWORKED COMMUNICATION SYSTEMS AND PROTOCOLS, AND COORDINATION ALGORITHMS DEVELOPED AS PART OF THIS PROJECT?S MOTHERSHIP-AND-PASSENGER SYSTEM WILL HELP ADVANCE THE FIELD OF UNDERWATER EXPLORATION IN CONFINED AND HARD-TO-REACH ENVIRONMENTS. THE PROJECT WILL ALSO FOSTER THE TRAINING OF FUTURE SCIENTISTS AND ENGINEERS BY ENGAGING YOUTHS FROM SMALL FISHING COMMUNITIES IN OREGON THROUGH PRESENTATIONS AT OREGON?S MATE ROV REGIONAL COMPETITION, BY EMPLOYING HIGH-SCHOOL INTERNS THROUGH THE APPRENTICESHIPS IN SCIENCE AND ENGINEERING (ASE) SUMMER ACADEMY PROGRAM, AND BY TRAINING MULTIPLE UNDERGRADUATE AND GRADUATE STUDENTS AT PARTICIPATING INSTITUTIONS. THE GOAL OF THIS PROJECT IS TO DEVELOP A MOTHERSHIP-AND-PASSENGER SAMPLING SYSTEM TO REACH DIFFICULT-TO-ACCESS GLACIER GROUNDING ZONES VIA THE OPEN OCEAN TO MEASURE THE EXTENT OF ICE CAVITIES AND SURROUNDING WATER PROPERTIES. THE PROJECT WILL INNOVATE ALONG THREE MAIN AREAS OF INQUIRY: 1) PASSENGER ROBOT DESIGN, 2) ACOUSTIC COMMUNICATION PROTOCOLS AND HARDWARE, AND 3) MOTHERSHIP-AND-PASSENGER COORDINATION ALGORITHMS. NOVEL, LOW-COST PASSENGER ROBOTS WILL BE CONCEIVED THAT CAN SWITCH THROUGH DIFFERENT OPERATION MODES TO OPTIMIZE MANEUVERABILITY, POWER CONSUMPTION, OR A COMBINATION OF BOTH, AS NEEDED FOR VARIOUS TASKS THROUGHOUT A DEPLOYMENT. ACOUSTIC COMMUNICATION PROTOCOLS AND HARDWARE WILL BE DEVELOPED TO PRIORITIZE ROBUST COMMUNICATION BETWEEN PASSENGER ROBOTS OVER THROUGHPUT AND PERMIT SWARM SELF-LOCALIZATION BY UTILIZING TIME-OF-FLIGHT AND ANGLE-OF-ARRIVAL BETWEEN PASSENGERS TO ESTIMATE RELATIVE POSITIONS. SWARM COORDINATION ALGORITHMS WILL BE DESIGNED TO ESTIMATE FLOW DIRECTION AND STRENGTH FROM THE PASSENGER ROBOTS? RELATIVE POSITIONS TO OPTIMIZE NAVIGATION AND POWER CONSUMPTION. THE PERFORMANCE OF THE NETWORK WILL BE TESTED IN INCREASINGLY CHALLENGING ENVIRONMENTS, I.E., TESTS WILL BE CONDUCTED IN A POOL, AN UNFROZEN LAKE, AND FINALLY IN A FROZEN LAKE, WHILE NETWORK CAPABILITIES WITH A LARGER SWARM WILL BE MODELED TO ENSURE THE SCALABILITY OF THE SYSTEM TO OCEAN DEPLOYMENTS. FINALLY, THE SOFTWARE DEVELOPED FOR THE MOTHERSHIP-AND-PASSENGER COMMUNICATION AND SELF-LOCALIZATION PROTOCOLS WILL BE GENERALIZABLE AND MADE AVAILABLE OPEN-SOURCE TO ALLOW OTHER RESEARCH TEAMS TO ADAPT THE SYSTEM TO THEIR OWN NEEDS. THE MOTHERSHIP-AND-PASSENGER SAMPLING SYSTEM WILL NOT ONLY ADVANCE UNDER-ICE-OBSERVATION CAPABILITIES BUT ALSO HAVE WIDER OCEANOGRAPHIC APPLICATIONS SUCH AS DETECTION AND MONITORING OF UNDERWATER HARMFUL ALGAL BLOOMS OR ANOXIC EVENTS THREATENING FISHERIES. 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 | $45.5k | 7/28/25 | ||
| Not listed | $146.2k | 5/19/25 |