Interdecadal Change in the Covariability of the Tibetan Plateau and Indian Summer Precipitation and Associated Circulation Anomalies

Atmosphere Pub Date : 2024-01-19 DOI:10.3390/atmos15010117
Xinchen Wei, Ge Liu, S. Nan, Tingting Qian, Ting Zhang, Xin Mao, Yuhan Feng, Yuwei Zhou
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Abstract

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.
青藏高原和印度夏季降水可变性的年代际变化及相关环流异常
本研究探讨了青藏高原夏季东西偶极降水与印度降水之间的共变率的年代际变化,并主要探讨了大气环流异常对共变率的调节作用。结果表明,青藏高原西部降水(WTPP)、青藏高原东部降水(ETPP)和印度西北部降水(NWIP)具有共变性,WTPP 和 NWIP 之间存在同相变化,WTPP 和 ETPP 之间存在异相变化。此外,这种共变性在 1981-2004 年间并不明显,在 2005-2019 年间变得显著,显示出明显的年代际变化。2005-2019 年期间,略微向北倾斜的厚位势高度异常控制着 TP,形成了上层和下层耦合环流异常(即 TP 上空的异常上层西风和 TP 南翼周围的异常下层东南风和东北风)。因此,对流层上层和下层环流异常会协同调节夏季 WTPP、ETPP 和 NWIP,从而导致 2005-2019 年期间大洋洲和印度夏季降水的共变性。高层或低层环流异常不可能单独导致显著的降水共变性。在 1981-2004 年期间,高层和低层环流异常并不是强耦合的,这导致了降水的不可变性。北太平洋西部(WNP)和热带大西洋(TA)的海面温度异常(SSTA)可能会协同调节上层和下层耦合环流异常,从而导致 2005-2019 年期间 WTPP、ETPP 和 NWIP 的共变性。在 1981-2004 年期间,WNP 和 TA SST 对耦合环流异常的调节作用较弱,因此不利于降水共变性的形成。本研究可对大埔及其邻近地区夏季降水时空变化特征和机制提供有价值的见解,从而为当地水资源管理、生态环境保护和社会经济发展提供科学支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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