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Wave Effect on the Ocean Circulations Through Mass Transport and Wave-Induced Pumping 被引量:3
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作者 BI Fan WU Kejian 《Journal of Ocean University of China》 SCIE CAS 2014年第2期175-182,共8页
The wave Coriolis-Stokes-Force-modified ocean momentum equations are reviewed in this paper and the wave Stokes transport is pointed out to be part of the ocean circulations. Using the European Centre for Medium-Range... The wave Coriolis-Stokes-Force-modified ocean momentum equations are reviewed in this paper and the wave Stokes transport is pointed out to be part of the ocean circulations. Using the European Centre for Medium-Range Weather Forecasts 40-year reanalysis data(ERA-40 data) and the Simple Ocean Data Assimilation(SODA) version 2.2.4 data, the magnitude of this transport is compared with that of wind-driven Sverdrup transport and a 5-to-10-precent contribution by the wave Stokes transport is found. Both transports are stronger in boreal winter than in summers. The wave effect can be either contribution or cancellation in different seasons. Examination with Kuroshio transport verifies similar seasonal variations. The clarification of the efficient wave boundary condition helps to understand the role of waves in mass transport. It acts as surface wind stress and can be functional down to the bottom of the ageostrophic layer. The pumping velocities resulting from wave-induced stress are zonally distributed and are significant in relatively high latitudes. Further work will focus on the model performance of the wave-stress-changed-boundary and the role of swells in the eastern part of the oceans. 展开更多
关键词 Stokes transport Sverdrup transport wave pumping velocity western boundary currents
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坑道式通风怎样解决季节变换问题
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《中国禽业导刊》 2000年第12期14-15,共2页
关键词 坑道式通风鸡舍 过渡型通风 半过渡型通风 季节性天气变化
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