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Relative Roles of Eurasian Snow Depth and Sea Surface Temperature in Indian and Korean Summer Monsoons Based on GME Model Simulations

机译:基于GME模型模拟的印度和韩国夏季季风的欧亚雪深和海表面温度的相对作用

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Indian Summer Monsoon (ISM) and East Asian Summer Monsoon (EASM) are the most important weather systems in India and Korea respectively. The interannual variations of ISM and EASM largely depend on the anomalies of sea surface temperatures (SSTs) of Tropical Equtorial Pacific and Indian Ocean and also on the Eurasian Snow Depth/Cover. In this study, the relative roles of these two most important surface boundary conditions on the Indian and Korean monsoons have been examined using the high resolution (40?km) global numerical weather prediction model of German Weather Service (GME). Four sets of experiments were carried out by varying the climatological and observed values of SSTs and snow. This study shows that there is a negative (positive) relationship between the Western (Eastern) Eurasian snow depth and ISMR, whereas a positive (negative) relationship between the Western (Eastern) Eurasian snow depth and Korean monsoon rainfall has been observed. Results show that when observed SST and snow are prescribed to the model as boundary conditions, the simulated winds and rainfall are close to the NCEP/NCAR reanalyzed winds and GPCP rainfall, respectively. This study reveals that the model simulated summer monsoons in Indian and Korean domains are not good enough unless an observed Eurasian snow is prescribed in addition to the observed SST.
机译:印度夏季季风(ISM)和东亚夏季季风(EASM)分别是印度和韩国最重要的天气系统。 ISM和EASM的续集变化在很大程度上取决于热带EQUTERIGH太平洋和印度洋的海面温度(SST)的异常,以及欧亚雪深/覆盖。在这项研究中,使用德国天气服务(GME)的高分辨率(40 km)全球数值天气预报模型来检查印度和韩国季风上这两个最重要的表面边界条件的相对角色。通过改变SST和雪的气候和观察值来进行四组实验。本研究表明,西部(东部)欧亚雪深和ismr之间存在负面(正面)的关系,而西方(东部)欧亚雪深度和韩国季风降雨之间的积极(负)关系。结果表明,当观察到的SST和雪被规定为模型作为边界条件时,模拟风和降雨分别接近NCEP / NCAR重新分析风和GPCP降雨。本研究揭示了印度和韩国域中的模型模拟夏季季风并不足够好,除非在观察到的SST除了观察到的欧亚雪。

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