The Office of Naval Research's Coupled Boundary Layers and Air–Sea Transfer (CBLAST) program is being conducted to investigate the processes that couple the marine boundary layers and govern the exchange of heat, mass, and momentum across the air–sea interface. CBLAST-LOW was designed to investigate these processes at the low-wind extreme where the processes are often driven or strongly modulated by buoyant forcing. The focus was on conditions ranging from negligible wind stress, where buoyant forcing dominates, up to wind speeds where wave breaking and Langmuir circulations play a significant role in the exchange processes. The field program provided observations from a suite of platforms deployed in the coastal ocean south of Martha's Vin...
Abstract Air‐sea interactions are critical to large-scale weather and climate predictions because of...
The long term goal of this project is to provide a new set of parameterizations of air-sea fluxes, w...
Abstract Air‐sea interactions are critical to large-scale weather and climate predictions because of...
The Office of Naval Research's Coupled Boundary Layers and Air–Sea Transfer (CBLAST) program is bein...
Author Posting. © American Meteorological Society, 2007. This article is posted here by permission ...
The article of record as published may be found at http://dx.doi.org/10.1175/BAMS-88-3-341Observatio...
The long-terms goals of the research are to understand and parameterize the physics of air-sea inter...
The marine boundary layer (MBL) is a dynamic region where the ocean is strongly coupled with the atm...
Observations from a suite of platforms deployed in the coastal ocean south of Martha’s Vineyard are ...
The turbulent fluxes of momentum, mass, and energy across the ocean-atmosphere boundary are fundamen...
Observations from a suite of platforms deployed in the coastal ocean are being combined with numeric...
Circulation models used for ocean forecasting in coastal regions parameterize vertical mixing using ...
Winds and waves in marine boundary layers are often in an unsettled state when fast-running swell ge...
Circulation models used for ocean forecasting in coastal regions parameterize vertical mixing using ...
Air‐sea interactions are critical to large-scale weather and climate predictions because of the ocea...
Abstract Air‐sea interactions are critical to large-scale weather and climate predictions because of...
The long term goal of this project is to provide a new set of parameterizations of air-sea fluxes, w...
Abstract Air‐sea interactions are critical to large-scale weather and climate predictions because of...
The Office of Naval Research's Coupled Boundary Layers and Air–Sea Transfer (CBLAST) program is bein...
Author Posting. © American Meteorological Society, 2007. This article is posted here by permission ...
The article of record as published may be found at http://dx.doi.org/10.1175/BAMS-88-3-341Observatio...
The long-terms goals of the research are to understand and parameterize the physics of air-sea inter...
The marine boundary layer (MBL) is a dynamic region where the ocean is strongly coupled with the atm...
Observations from a suite of platforms deployed in the coastal ocean south of Martha’s Vineyard are ...
The turbulent fluxes of momentum, mass, and energy across the ocean-atmosphere boundary are fundamen...
Observations from a suite of platforms deployed in the coastal ocean are being combined with numeric...
Circulation models used for ocean forecasting in coastal regions parameterize vertical mixing using ...
Winds and waves in marine boundary layers are often in an unsettled state when fast-running swell ge...
Circulation models used for ocean forecasting in coastal regions parameterize vertical mixing using ...
Air‐sea interactions are critical to large-scale weather and climate predictions because of the ocea...
Abstract Air‐sea interactions are critical to large-scale weather and climate predictions because of...
The long term goal of this project is to provide a new set of parameterizations of air-sea fluxes, w...
Abstract Air‐sea interactions are critical to large-scale weather and climate predictions because of...