MRI GCM-IIによるアジアの夏季モンスーンのシミュレーションに対する水平解像度の効果

Q4 Earth and Planetary Sciences Papers in Meteorology and Geophysics Pub Date : 1999-01-01 DOI:10.2467/MRIPAPERS.50.65
A. Chandrasekar, D. V. B. Rao, 昭雄 鬼頭
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引用次数: 11

Abstract

The MRI atmospheric general circulation model has been used to study the effect of horizontal resolution on the simulation of Asian summer monsoon. The model has been integrated for an eight year period with three different horizontal resolutions designated as Low (4°lat X 5°long), Medium (3°lat X 3.3°long) and High (2°lat X 2.5°long), respectively. The results indicate that the increase of horizontal resolution improved the simulation of mean sea level pressure and precipitation patterns. The high resolution model simulates a heat low and monsoon trough in agreement with the observations, while the low resolution model simulates an abnormal heat low over north India. The high resolution model simulates the precipitation maxima over the Bay of Bengal and the south Indian ocean, and a dry region over the Tarim basin better, while the low resolution model better simulates the precipitation maximum over the Arabian sea. All the models simulate weaker monsoon circulation while the increase of horizontal resolution leads to further weakening of low level monsoon westerlies. The results of this study conclude that the increase of horizontal resolution improved the simulation of many observed features of the Asian summer monsoon circulation, but certain features deteriorated indicating that the model parameterizations may need to be suitably modified.
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MRI GCM-II水平分辨率对亚洲夏季季风模拟的效果
利用磁共振大气环流模式研究了水平分辨率对亚洲夏季风模拟的影响。该模型已经集成了八年的时间,具有三种不同的水平分辨率,分别为低(4°纬度X 5°长),中(3°纬度X 3.3°长)和高(2°纬度X 2.5°长)。结果表明,水平分辨率的提高改善了平均海平面压力和降水模式的模拟。高分辨率模式模拟了一个与观测相符的热低压和季风槽,而低分辨率模式模拟了印度北部的一个异常热低压。高分辨率模式较好地模拟了孟加拉湾、南印度洋和塔里木盆地干燥地区的降水最大值,而低分辨率模式较好地模拟了阿拉伯海的降水最大值。所有模式模拟的季风环流减弱,而水平分辨率的增加导致低层季风西风带进一步减弱。研究结果表明,水平分辨率的提高改善了亚洲夏季风环流的许多观测特征的模拟,但某些特征恶化,表明模式的参数化可能需要适当修改。
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来源期刊
Papers in Meteorology and Geophysics
Papers in Meteorology and Geophysics Earth and Planetary Sciences-Geophysics
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