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The Evolution of Tropospheric Temperature Field and its Relationship With The Onset of Asian Summer Monsoon

机译:对流层温度场的演变及其与亚洲夏季风爆发的关系

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摘要

The mean state and year-to-year variations of the tropospheric temperature fields and their relationship with the establishment of the summertime East Asian monsoon (EAM) and the Indian monsoon (INM) are studied using the NCEP reanalysis data of 15 years (1982-1996). The results show that the seasonal shift of the South Asian High in the upper troposphere and the establishment of the EAM and the INM are closely related to the seasonal warming which causes a reversal of the meridional gradient of upper tropospheric mean temperature over the monsoon regions. On the average of 15 years, the reversal time of the temperature gradient in the EAM region (INM region) is concurrent with (one pentad earlier than) the onset time of the summer monsoon. In most years of the 15-year period, the reversal of temperature gradient coincides or precedes the onset time of the summer monsoon in both the EAM region and the INM region. The results suggest an important role of thermal processes on the establishment of the Asian monsoon. The contributors to the upper tropospheric warming over the EAM region are the strong horizontal warm advection and the diabetic heating against the adiabatic cooling due to upward motion. In the INM region, strong adiabatic heating by subsidence and the diabetic heating are major warming processes against the strong horizontal cold advection related to the persistent northwestlies to the southwestern periphery of the Tibetan Plateau. It appears that the early or late establishment of the Asian summer monsoon is not directly related to the differential warming near the surface.
机译:对流层温度场的平均状态和年际变化,以及与夏季东亚季风(EAM)和印度季风(INM)的建立之间的关系,使用了15年(1982- 1996)。结果表明,南亚高空对流层的季节变化以及EAM和INM的建立与季节变暖密切相关,这导致季风区域上对流层平均温度的子午梯度发生逆转。平均15年,EAM地区(INM地区)的温度梯度逆转时间与夏季季风的开始时间同时发生(比之早5个百分点)。在15年期间的大多数年份中,EAM地区和INM地区的温度梯度逆转恰好或早于夏季季风的发作时间。结果表明,热过程对亚洲季风的建立具有重要作用。 EAM区域上层对流层变暖的原因是强烈的水平暖平流以及由于向上运动而对绝热降温的糖尿病加热。在INM地区,沉陷和绝热加热强烈是糖尿病的主要变暖过程,它是与青藏高原西南边缘持续西北向相关的强水平冷对流的主要过程。看来亚洲夏季风的早晚建立与地表附近变暖没有直接关系。

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