首页> 外文会议>The 9th conference on meso-scale convective systems and high-impact weather in East Asia >Numerical simulation research on the application of variational reanalysis technique with satellite remote sensing data over the Tibetan Plateau key area to '7.21'severe rainfall in Beijing
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Numerical simulation research on the application of variational reanalysis technique with satellite remote sensing data over the Tibetan Plateau key area to '7.21'severe rainfall in Beijing

机译:卫星遥感数据变分再分析技术在青藏高原重点地区“ 7.21”北京强降水中应用的数值模拟研究

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1.Introduction The Tibetan Plateau,which is the world's highest plateau with the most complex terrain,impacts profoundly the structural pattem of the global atmospheric circulation via its topographic and thermal effects,and thereby is a sensitive region of global weather-climate changes as well as one of important driving forces for the seasonal progression of monsoon over China and East Asia(Huang,1985;Qianet al.,1992;Wu and Zhang,1998,1999;Yasunari et al.,2000;He et al.,2007,2008).It impacts the moisture transport to torrential rains,floods,and disastrous snows areas in China(Chen el al.,1985;Ji et al.,1986;Yanaiet al.,1992;Zhao et al.,2001;Xu et al.,2002).
机译:1引言青藏高原是世界上海拔最高,地形最复杂的高原,它通过地形和热效应深刻影响着全球大气环流的结构模式,因此也是全球天气气候变化的敏感区域是导致中国和东亚季风季节变化的重要驱动力之一(Huang,1985; Qianet等,1992; Wu和Zhang,1998,1999; Yasunari等,2000; He等,2007, 2008)。它影响了水分输送到中国的暴雨,洪水和灾难性降雪地区(Chen等,1985; Ji等,1986; Yanaiet等,1992; Zhao等,2001; Xu等,1985)。等人,2002)。

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