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广东省自然科学基金(04009790)

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1986年南海季风海-气界面热量交换被引量:5
2006年
为探索南海与季风相互作用,用观测资料,计算了1986年南海季风海气界面热量交换值.结果:南海夏季风爆发及其控制南海时,位于(20.49°N,114.14°E)附近海域,在热带辐合带和热带气旋系统内,海气界面热量交换强烈,潜热迅速跃升,1986年5月23日在台风系统内,感热出现正值,海洋向大气输送热量是主要现象,主要贡献来自潜热.夏季风控制南海天气晴好时,海面温度虽然较高,感热却出现负值,大气向海洋输送热量是主要现象,主要贡献来自海面吸收的短波辐射和感热,结果与闫俊岳等的不同.夏季风结束后,南海受东北季风控制时,海气界面热量交换非常强烈,南海对大气加热是主要现象,主要贡献来自潜热,冷空气到达海面时,感热量值迅速跃升均为正值.结论:南海海气界面热量交换的变化与海面温度变化趋势不一致,季风控制南海时,南海对夏季风响应为主.
吴迪生冯伟忠许建平闫敬华赵雪张纪伟乔贯宇林复吕桕明
关键词:夏季风
Evolution mechanisms of the intraseasonal oscillation associated with the Yangtze River Basin flood in 1998被引量:13
2005年
With 1998 NCEP reanalysis data and the linear diagnostic equation for local me- ridional circulation, four main processes and the boundary effects with relatively large contribu- tions to the intraseasonal oscillation of the vertical branches of the East Asian meridional circula- tion are quantitatively identified among all the processes involved in the quasi-primitive equations used in the derivation of the linear diagnostic equation. The numerical results show that the main processes with maximal contributions in the lower latitudes include the latent heating and vertical transports of sensible heat. These processes are mainly associated with the tropical convective activities and result in the low-frequency cyclones in the lower latitudes. The main processes with maximal contributions in the higher latitudes are the horizontal transports of westerly momentum and horizontal temperature advections. These processes are mainly associated with the fluctua- tions in the westerlies and result in the low-frequency cyclones in the higher latitudes. The low-frequency cyclones propagating away from lower latitudes not only interact with those from higher latitudes to enhance the lifting of the moist air in the Yangtze River Basin (YRB), but also leave room for the development of the low-frequency anticyclones over the South China Sea (SCS). The southwesterly in the northwestern quadrant of the SCS anticyclones provides the YRB with abundant moisture. This favorable moisture condition along with the enhanced rising motion in the YRB leads to the extraordinary flood in 1998.
CHEN Guixing LI Weibiao YUAN Zhuojian WEN Zhiping
关键词:INTRASEASONALCONVECTIVELOW-FREQUENCYCIRCULATION
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