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Impacts of Anomalous Midlatitude Cyclone Activity over East Asia during Summer on the Decadal Mode of East Asian Summer Monsoon and Its Possible Mechanism

机译:夏季夏季东亚异常中亚旋风活动对东亚夏季季风的二等方式的影响及其机制

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摘要

By using an objective identification and tracking algorithm of the cyclone, the statistics of midlatitude cyclone activity in East Asia during summer for the period 1979-2013 were analyzed. The impact of the midlatitude summer cyclone anomalies in East Asia on the decadal mode of East Asian summer monsoon (EASM) was investigated and possible mechanisms were proposed. The possible reasons for the anomalous cyclone activity from the perspective of land surface thermal forcing were also explored. Results indicate that the midlatitude summer cyclone activity over East Asia exhibits decadal changes in the period of 1979-2013 and is significantly weakened after early 1990s. Further analysis indicates that there is a close relationship between the midlatitude summer cyclone activity over East Asia and the decadal variation of EASM; when the midlatitude summer cyclone activity over East Asia is strong (weak), EASM tends to be intensified (weakened), and the weak cyclone activity after 1993 generally coincides with the decadal weakening of EASM. Moreover, there is a close linkage between the weakening of cyclonic activity after the early 1990s and the nonuniform surface warming of the Eurasian continent. Significant warming to the west of Mongolia tends to weaken the north-south temperature gradient and the atmospheric baroclinicity to its south and eventually can lead to weakening of the midlatitude cyclone activity over East Asia.
机译:通过使用旋风器的客观识别和跟踪算法,分析了1979 - 2013年夏季东亚中亚中亚旋风活动的统计数据。中亚中亚中亚的影响对东亚夏季季风(EASM)的二等模式的影响,提出了可能的机制。还探讨了土地表面热强制视角下异常旋风活性的可能原因。结果表明,东亚的中亚夏季旋风活动在1979 - 2013年期间展出了二等变化,并在20世纪90年代初期后明显减弱。进一步的分析表明,东亚的中亚夏季旋风活动与EASM的二等变化之间存在密切关系;当中亚的中亚夏季旋风活动强(弱)时,EASM往往会被加强(削弱),1993年后的弱旋风活动通常与EASM的截止削弱一致。此外,在20世纪90年代初期之后的旋风活性弱化与欧亚大陆的不均匀表面变暖之间存在密切联系。对蒙古西部的显着变暖倾向于削弱南北温度梯度和南方大气的双层性,最终会导致东亚的中亚中间旋风活动的弱化。

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    《Journal of Climate》 |2017年第2期|共15页
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  • 正文语种 eng
  • 中图分类 气候学;
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