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Roles of Mesoscale Terrain and Latent Heat Release in Typhoon Precipitation: A Numerical Case Study 被引量:3

Roles of Mesoscale Terrain and Latent Heat Release in Typhoon Precipitation: A Numerical Case Study
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摘要 The mesoscale orographic effects on typhoon Aere's precipitation are simulated using an Advanced Regional Eta-coordinate Model (AREM) version 3.0. In particular, the effects of the latent heat release are studied by two comparable experiments: with and without condensational heating. The results show that the typhoon rainfall is tripled by the southeastern China mesoscale terrain, and the condensational heating is responsible for at least half of the increase. One role of the latent heat release is to warm the atmosphere, leading to a depression of the surface pressure, which then causes a larger pressure difference in the zonal direction. This pressure gradient guides the water vapour to flow into the foothills, which in turn amplifies the water vapour flux divergence amplified, causing the typhoon rainfall to increase eventually. The other role of the latent heat release is to make the convection more organized, resulting in a relatively smaller rain area and stronger precipitation. The mesoscale orographic effects on typhoon Aere's precipitation are simulated using an Advanced Regional Eta-coordinate Model (AREM) version 3.0. In particular, the effects of the latent heat release are studied by two comparable experiments: with and without condensational heating. The results show that the typhoon rainfall is tripled by the southeastern China mesoscale terrain, and the condensational heating is responsible for at least half of the increase. One role of the latent heat release is to warm the atmosphere, leading to a depression of the surface pressure, which then causes a larger pressure difference in the zonal direction. This pressure gradient guides the water vapour to flow into the foothills, which in turn amplifies the water vapour flux divergence amplified, causing the typhoon rainfall to increase eventually. The other role of the latent heat release is to make the convection more organized, resulting in a relatively smaller rain area and stronger precipitation.
出处 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2007年第1期35-43,共9页 大气科学进展(英文版)
基金 This work was jointly supported by the National Key Basic Research and Development Project of China under Grant No.2004CB418304 the National Natural Science Foundation of China under Grant Nos.40505016,40575030 and 40233031.
关键词 latent heat release mesoscale terrain typhoon precipitation~ numerical modeling latent heat release, mesoscale terrain, typhoon precipitation~ numerical modeling
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