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High-resolution simulation of Asian monsoon response to regional uplift of the Tibetan Plateau with regional climate model nested with global climate model

机译:区域气候模型与全球气候模型嵌套的亚洲季风对青藏高原区域隆升响应的高分辨率模拟

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Using the high-resolution regional climate model-Weather Research and Forecasting model(WRF)-nested within the National Center for Atmospheric Research Community Atmosphere Model(CAM4), a set of sensitivity experiments were conducted to investigate the Asian climate response to the regional uplift of the Tibetan Plateau (TP). The results indicated that the presence of Asian orography, including the TP, strengthened both the Indian and East Asian summer monsoon (ISM and EASM), respectively. The uplift of the central-southern TP and western TP caused an asynchronous response of monsoon precipitation over India and East Asia, while the presence of the Himalayan mountains, Gobi Altai mountains, and Mongolian Plateau increased both ISM and EASM precipitation. The enhanced summer monsoon precipitation over southeastern China due to the TP uplift was caused by strong water vapor transportation, vapor convergence and ascending movement. The Indian and East Asian winter monsoons (IWM and EAWM), however, showed asynchronous change in response to the TP uplift; the EAWM was strengthened, but the opposite holds for the IWM. This study provides further understanding of the response of Asian monsoons to the regional uplift of the TP and emphasizes the importance of high-resolution regional climate model simulation nested within global climate model.
机译:利用位于国家大气研究共同体大气模型(CAM4)中的高分辨率区域气候模型-天气研究和预报模型(WRF),进行了一系列敏感性实验,以研究亚洲气候对区域隆升的响应青藏高原(TP)。结果表明,亚洲地形(包括TP)的存在分别增强了印度和东亚夏季风(ISM和EASM)。中南部TP和西部TP的隆升引起印度和东亚季风降水的异步响应,而喜马拉雅山脉,戈壁阿尔泰山脉和蒙古高原的存在增加了ISM和EASM的降水。 TP升高导致中国东南部夏季季风降水增加,其原因是强烈的水汽输送,水汽汇聚和上升运动。然而,印度和东亚的冬季季风(IWM和EAWM)显示出对TP升高的异步变化。 EAWM得到了加强,但IWM则相反。这项研究进一步了解了亚洲季风对TP区域上升的响应,并强调了嵌套在全球气候模型中的高分辨率区域气候模型模拟的重要性。

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