This Project Grant award from the National Science Foundation's Geosciences program (CFDA 47.050) will synthesize data on the role of coastal sediments in carbon and nutrient cycling along the East Coast of the United States. The $453,714 award to Trustees of Boston University, spanning April 2025 to March 2028, will combine sediment, water column, and modeling data to evaluate how environmental conditions influence benthic fluxes of carbon, oxygen, and nutrients in this relatively data-rich...
The National Science Foundation (NSF) has awarded a 3-year, $575,150 Project Grant to Florida State University (FSU) under the Geosciences program (CFDA 47.050) to study the impacts of ocean surface currents and waves on atmospheric boundary layer processes over the Gulf Stream. The research aims to determine how coupling of winds, currents, and waves modifies the budgets of heat, moisture, and momentum, as well as the extent to which vertical transport within the atmospheric boundary layer...
The University of Massachusetts Dartmouth will receive $396,233 from the National Science Foundation Division of Ocean Sciences under the agency's Geosciences program (CFDA 47.050) from September 1, 2021 through August 31, 2025 to conduct collaborative research on global estimates of energy pathways and stirring by internal waves and vortical modes. The Geosciences program supports basic research in the atmospheric, earth, and ocean sciences to strengthen understanding of the integrated Earth...
The National Science Foundation (NSF) Geosciences program has awarded a $259,253 Project Grant to the University of New Hampshire (UNH) to investigate the impacts of sea breeze and steep surface gravity waves on nearshore air-sea fluxes. The overarching goal is to advance understanding of how ocean surface waves mediate the exchange of momentum and heat between the atmosphere and ocean, especially over spatial and temporal scales that are currently under-resolved by observations and models....
This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) will fund research to investigate the interactions between internal waves and submesoscale currents in the ocean's bottom boundary layer. The total award is $418,382 over a period of 3 years, from June 1, 2024 to May 31, 2027. The research will combine theoretical concepts, analyses of existing measurements, and computer modeling to assess how these wave-current interactions affect mixing and...
The National Science Foundation (NSF) awarded a $968,823 Project Grant under the Geosciences program (CFDA 47.050) to the University of California, Los Angeles (UCLA) to advance research on the impacts of surface waves on ocean chemistry and ecosystems. The 3-year project, titled "SWEL: Surface Wave Effects on Upwelling and Ecosystem Linkages", will utilize advanced computer models and real-world data to investigate small-scale ocean phenomena, such as currents and wave dynamics, and...
This National Science Foundation project grant of $568,415 supports research into submesoscale ocean processes through May 2025. Funded under the Geosciences program (CFDA 47.050), the award will advance understanding of exchange between the well-mixed surface layer and stratified interior of the ocean at horizontal length scales of hundreds to thousands of meters. Major activities include Reynolds-averaged numerical simulations to quantify the impact of incorporating entrainment fluxes into a...
This $302,035 Project Grant awarded by the National Science Foundation (NSF) Division of Ocean Sciences under the Geosciences program (CFDA 47.050) will fund an observational study at Texas A&M University to quantify the impact of nearshore processes on air-sea momentum transfer. The project aims to identify and systematically measure coastal processes and features that alter nearshore air-sea momentum exchange, leveraging an extensive data set collected at the Army Field Research Facility...
This National Science Foundation (NSF) Project Grant award under CFDA 47.050 - Geosciences program provides $181,787 to the Massachusetts Institute of Technology (MIT) to study the role of wind and waves in mixing the upper ocean. The 3-year project, effective July 1, 2024, will carry out simulations with laboratory experiments and computer models to test the hypothesis that coupling currents and waves is necessary to reliably represent the deepening of the ocean surface layer. The research aims...
This National Science Foundation (NSF) Geosciences program (CFDA 47.050) award in the amount of $124,523 supports a collaborative research project to examine how the dissipation of shoaling internal bores drives along-shelf currents on the inner continental shelf. The project will utilize idealized modeling, field observations, and realistic circulation modeling to characterize the along-shelf flow and its relationship to internal bore dissipation. Key objectives include understanding how...