Mesoscale atmosphere ocean coupling enhances the transfer of wind energy into the ocean
نویسندگان
چکیده
Although it is well established that the large-scale wind drives much of the world's ocean circulation, the contribution of the wind energy input at mesoscales (10-200 km) remains poorly known. Here we use regional simulations with a coupled high-resolution atmosphere-ocean model of the South Atlantic, to show that mesoscale ocean features and, in particular, eddies can be energized by their thermodynamic interactions with the atmosphere. Owing to their sea-surface temperature anomalies affecting the wind field above them, the oceanic eddies in the presence of a large-scale wind gradient provide a mesoscale conduit for the transfer of energy into the ocean. Our simulations show that this pathway is responsible for up to 10% of the kinetic energy of the oceanic mesoscale eddy field in the South Atlantic. The conditions for this pathway to inject energy directly into the mesoscale prevail over much of the Southern Ocean north of the Polar Front.
منابع مشابه
Air/Ocean Model and Prediction System Development
The goal of this project is to develop a fully coupled mesoscale atmosphere-ocean prediction system that can be used over any given area of the world. This goal is to be accomplished by coupling a fullphysics mesoscale ocean model to a mesoscale atmospheric forecast model; developing, testing, and evaluating software for the necessary supporting infrastructure; and by leveraging related program...
متن کاملModeling, Optimization and exergoeconomic analysis a multiple energy production system based on solar Energy, Wind Energy and Ocean Thermal Energy Conversion (OTEC) in the onshore region
In the present study, investigated an energy production system using three types of renewable energy: solar, wind and ocean thermal energy with climatic conditions and close to areas with high potential for the OTEC system, Has a good position in terms of wind speed and solar radiation, used them as energy sources. The proposed system is designed and evaluated based on the total daily electrici...
متن کاملHigh-Resolution Satellite-Derived Dataset of the Surface Fluxes of Heat, Freshwater, and Momentum for the TOGA COARE IOP
The interaction between the tropical atmosphere and the Pacific Ocean warm pool consists of intense but episodic exchanges of heat, momentum, and freshwater. This coupling of the atmosphere–ocean system occurs over temporal scales ranging from that of an individual cloud to the Walker circulation. A unique feature of the equatorial oceans is the existence of a free-wave mode of large zonal wave...
متن کاملNext-Generation Air–Ocean–Wave Coupled Ocean/Atmosphere Mesoscale Prediction System (COAMPS)
Introduction: A team of NRL scientists from the Marine Meteorology and Oceanography Divisions has successfully transformed the one-way air–ocean Coupled Ocean/Atmosphere Mesoscale Prediction System (COAMPS®*) into a six-way fully coupled air–ocean– wave weather and marine forecasting system. This was accomplished using the state-of-the-art Earth System Modeling Framework (ESMF), making COAMPS t...
متن کاملSymmetric and Asymmetric Structures of Hurricane Boundary Layer in Coupled Atmosphere–Wave–Ocean Models and Observations
It is widely accepted that air–sea interaction is one of the key factors in controlling tropical cyclone (TC) intensity. However, the physical mechanisms for connecting the upper ocean and air–sea interface with storm structure through the atmospheric boundary layer in TCs are not well understood. This study investigates the air–sea coupling processes using a fully coupled atmosphere–wave–ocean...
متن کامل