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Atlantic air-sea interaction and model validation     North Atlantic  predictability  interaction  validation  NAO  anticyclonicity       font style='font-size:12px;'> 2015/9/17
An analysis of observations from 1948-1998 suggests that the atmosphere in the North Atlantic region does respond to North Atlantic Sea-Surface Temperatures (SSTs) throughout the annual cycle. In the ...
Air-Sea Interaction: Laws and Mechanisms     Laws  Mechanisms       font style='font-size:12px;'> 2015/7/31
Gabe Csanady's 'Air-Sea Interaction: Laws and Mechanisms' provides a new and long needed perspective on air-sea interaction. This book discusses similarities and differences in the ocean and atmospher...
The exchange of CO2 and other gases across the ocean-air interface is an extremely important component in global climate dynamics, photosynthesis and respiration, and the absorption of anthropogenical...
Surpact: A SMOS Surface Wave Rider for Air-Sea Interaction     Air-Sea Interaction  Wave       font style='font-size:12px;'> 2015/7/16
A new small wave rider called Surpact was developed for air-sea investigations. It was designed to attach to a drifter or a mooring and to float upon the surface waves in order to measure sea state an...
The biogeochemical dynamics of carbon in the ocean is a subject of fundamental interest to environmental studies. In this context, we have implemented a ten year run of the Brazilian Earth System Coup...
Air-sea interaction described by bilayer networks     Air-sea interaction  described  bilayer       font style='font-size:12px;'> 2011/10/8
We introduce bilayer networks in this paper to study the coupled air-sea systems. It proved true that the framework of bilayer networks is powerful for studying the statistical topology structure and ...
Abstract: We introduce bilayer networks in this paper to study the coupled air-sea systems. It proved true that the framework of bilayer networks is powerful for studying the statistical topology stru...
The North Pacific subarctic–subtropical boundary region is an important sink for atmospheric CO2 , with high annual influx relative to surrounding waters and large seasonal variability. The location...
Coastal areas are vulnerable to the accumulation of semivolatile organic compounds, such as PAHs, OCPs and PCBs from atmospheric inputs. Dry particulate and wet depositions, and air-water diffusive ex...
At present, although seasonal sea-ice cover mitigates atmosphere-ocean gas exchange, the Arctic Ocean takes up carbon dioxide (CO2) on the order of ?66 to ?199 Tg C year?1 (1012 g C), contributing 5–1...
Air-sea CO2 exchange depends on the air-sea CO2 gradient and the gas transfer velocity (k), computed as a function of wind speed. Large discrepancies among relationships predicting k from wind suggest...
Examples of Comparison of Wind and Air-Sea Interaction Characteristics on the Open Sea and in the Coastal Area of the Gulf of Finland.
Marine Meteorological Conditions and Air-Sea Exchange Characteristics During the »Øresund» Experiment.
Marine meteorological conditions and air-sea exchange processes over the northern Baltic Sea were studied using data from three open-sea lighthouse meteorological stations and the R/V Aranda automati...
One hundred forty-one simultaneous wind speed, temperature and humidity profiles measured during the Barbados Oceanographic and Meteorological Experiment (BOMEX) are analyzed. The observations were fr...

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