The Summer Snow Cover Anomaly over the Tibetan Plateau and Its Association with Simultaneous Precipitation over the Mei-yu–Baiu region

被引:11
作者
LIU Ge [1 ]
WU Renguang [2 ]
ZHANG Yuanzhi [2 ,3 ]
NAN Sulan [1 ]
机构
[1] Chinese Academy of Meteorological Sciences
[2] Institute of Space and Earth Information Science and Shenzhen Research Institute,the Chinese University of Hong Kong
[3] National Astronomical Observatories,Chinese Academy of Sciences
基金
中国国家自然科学基金;
关键词
snow cover; Tibetan Plateau; mei-yu; baiu; precipitation;
D O I
暂无
中图分类号
P426.6 [降水];
学科分类号
0706 ; 070601 ;
摘要
The summer snow anomalies over the Tibetan Plateau(TP) and their effects on climate variability are often overlooked, possibly due to the fact that some datasets cannot properly capture summer snow cover over high terrain. The satellite-derived Equal-Area Scalable Earth grid(EASE-grid) dataset shows that snow still exists in summer in the western part and along the southern flank of the TP. Analysis demonstrates that the summer snow cover area proportion(SCAP) over the TP has a significant positive correlation with simultaneous precipitation over the mei-yu–baiu(MB) region on the interannual time scale. The close relationship between the summer SCAP and summer precipitation over the MB region could not be simply considered as a simultaneous response to the Silk Road pattern and the SST anomalies in the tropical Indian Ocean and tropical central-eastern Pacific. The SCAP anomaly has an independent effect and may directly modulate the land surface heating and, consequently, vertical motion over the western TP, and concurrently induce anomalous vertical motion over the North Indian Ocean via a meridional vertical circulation. Through a zonal vertical circulation over the tropics and a Kelvin wave-type response, anomalous vertical motion over the North Indian Ocean may result in an anomalous high over the western North Pacific and modulate the convective activity in the western Pacific warm pool, which stimulates the East Asia–Pacific(EAP) pattern and eventually affects summer precipitation over the MB region.
引用
收藏
页码:755 / 764
页数:10
相关论文
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