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The heat balance on the sea surface in the mature phase of 1982/83 El Nino event
作者姓名:Yang Dasheng  Yang Bai  Pan Zhi
作者单位:Department of Geophysics, Peking University, Beijing 100871, China;Department of Geophysics, Peking University, Beijing 100871, China;Department of Geophysics, Peking University, Beijing 100871, China
摘    要:Using the air-sea data set of January, 1983 (the mature phase of the 1982/83 El Nino event), the net radiation on the sea surface, the fluxes of the latent and the sensible heat from ocean to the atmosphere and the net heat gain of the sea surface are calculated over the Indian and the Pacific Oceans for the domain of 35°N-35°S and 45°E-75°W. The results indicate that the upward transfer of the latent and the sensible heat fluxes over the winter hemisphere is larger than that over the summer hemisphere. The sensible heat over the tropical mid Pacific in the Southern Hemisphere is transported from the atmosphere to the ocean, though its magnitude is rather small. The latent heat flux gained by the air over the eastern Pacific is less than the mean value of the normal year. The net radiation, on which the cloud amount has considerable impact, is essentially zonally distributed. Moreover, the sea surface temperature (SST) has a very good correlation with the net radiation, the region of warm SST coinci

收稿时间:1990/10/20 0:00:00
修稿时间:1990/12/30 0:00:00

The heat balance on the sea surface in the mature phase of 1982/83 El Nino event
Yang Dasheng,Yang Bai,Pan Zhi.The heat balance on the sea surface in the mature phase of 1982/83 El Nino event[J].Acta Oceanologica Sinica,1991,10(4):539-554.
Authors:Yang Dasheng  Yang Bai and Pan Zhi
Institution:Department of Geophysics, Peking University, Beijing 100871, China
Abstract:Using the air-sea data set of January, 1983 (the mature phase of the 1982/83 El Nino event), the net radiation on the sea surface, the fluxes of the latent and the sensible heat from ocean to the atmosphere and the net heat gain of the sea surface are calculated over the Indian and the Pacific Oceans for the domain of 35°N-35°S and 45°E-75°W. The results indicate that the upward transfer of the latent and the sensible heat fluxes over the winter hemisphere is larger than that over the summer hemisphere. The sensible heat over the tropical mid Pacific in the Southern Hemisphere is transported from the atmosphere to the ocean, though its magnitude is rather small. The latent heat flux gained by the air over the eastern Pacific is less than the mean value of the normal year. The net radiation, on which the cloud amount has considerable impact, is essentially zonally distributed. Moreover, the sea surface temperature (SST) has a very good correlation with the net radiation, the region of warm SST coinciding with that of the low net radiation. The net radiation obtained by the mid Pacific Ocean is reduced by the SST anomaly during the El Nino event, whereas the atmosphere over there get more latent heat flux, and this results in the diminution of the net heat gain of the ocean. The overview of the heat budget is that the ocean over the winter hemisphere is the energy source of the atmosphere, and that over the summer hemisphere its energy sink.
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