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DOI10.3390/atmos15010117
Interdecadal Change in the Covariability of the Tibetan Plateau and Indian Summer Precipitation and Associated Circulation Anomalies
Wei, Xinchen; Liu, Ge; Nan, Sulan; Qian, Tingting; Zhang, Ting; Mao, Xin; Feng, Yuhan; Zhou, Yuwei
发表日期2024
EISSN2073-4433
起始页码15
结束页码1
卷号15期号:1
英文摘要This study investigates the interdecadal change in the covariability between the Tibetan Plateau (TP) east-west dipole precipitation and Indian precipitation during summer and primarily explores the modulation of atmospheric circulation anomalies on the covariability. The results reveal that the western TP precipitation (WTPP), eastern TP precipitation (ETPP), and northwestern Indian precipitation (NWIP) have covariability, with an in-phase variation between the WTPP and NWIP and an out-of-phase variation between the WTPP and ETPP. Moreover, this covariability was unclear during 1981-2004 and became significant during 2005-2019, showing a clear interdecadal change. During 2005-2019, a thick geopotential height anomaly, which tilted slightly northward, governed the TP, forming upper- and lower-level coupled circulation anomalies (i.e., anomalous upper-level westerlies over the TP and lower-level southeasterlies and northeasterlies around the southern flank of the TP). As such, the upper- and lower-tropospheric circulation anomalies synergistically modulate the summer WTPP, ETPP, and NWIP, causing the covariability of summer precipitation over the TP and India during 2005-2019. The upper- or lower-level circulation anomalies cannot independently result in significant precipitation covariability. During 1981-2004, the upper- and lower-level circulation anomalies were not strongly coupled, which caused precipitation non-covariability. The sea surface temperature anomalies (SSTAs) in the western North Pacific (WNP) and tropical Atlantic (TA) may synergistically modulate the upper- and lower-level coupled circulation anomalies, contributing to the covariability of the WTPP, ETPP, and NWIP during 2005-2019. The modulation of the WNP and TA SSTs on the coupled circulation anomalies was weaker during 1981-2004, which was therefore not conducive to this precipitation covariability. This study may provide valuable insights into the characteristics and mechanisms of spatiotemporal variation in summer precipitation over the TP and its adjacent regions, thus offering scientific support for local water resource management, ecological environment protection, and social and economic development.
英文关键词Tibetan Plateau; precipitation; covariability; interdecadal change
语种英语
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS记录号WOS:001149098500001
来源期刊ATMOSPHERE
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/303774
作者单位China Meteorological Administration; Chinese Academy of Meteorological Sciences (CAMS); China Meteorological Administration; Chinese Academy of Meteorological Sciences (CAMS); Nanjing University of Information Science & Technology
推荐引用方式
GB/T 7714
Wei, Xinchen,Liu, Ge,Nan, Sulan,et al. Interdecadal Change in the Covariability of the Tibetan Plateau and Indian Summer Precipitation and Associated Circulation Anomalies[J],2024,15(1).
APA Wei, Xinchen.,Liu, Ge.,Nan, Sulan.,Qian, Tingting.,Zhang, Ting.,...&Zhou, Yuwei.(2024).Interdecadal Change in the Covariability of the Tibetan Plateau and Indian Summer Precipitation and Associated Circulation Anomalies.ATMOSPHERE,15(1).
MLA Wei, Xinchen,et al."Interdecadal Change in the Covariability of the Tibetan Plateau and Indian Summer Precipitation and Associated Circulation Anomalies".ATMOSPHERE 15.1(2024).
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