Seasonally Evolving Trends Explain the North‐South Dipole Pattern Observed in Tibetan Plateau Precipitation

Author:

Ma Jieru1ORCID,Ren Hong‐Li1ORCID,Cai Ming2ORCID,Huang Jianping3ORCID

Affiliation:

1. State Key Laboratory of Severe Weather and Institute of Tibetan Plateau Meteorology Chinese Academy of Meteorological Sciences Beijing China

2. Department of Earth, Ocean, and Atmospheric Science Florida State University Tallahassee FL USA

3. Collaborative Innovation Center for Western Ecological Safety College of Atmospheric Sciences Lanzhou University Lanzhou China

Abstract

AbstractThe Tibetan Plateau (TP) precipitation is experiencing the north‐south dipole tendency pattern since 1979. In this study, we identify four primary seasonally evolving patterns (SEPs) that explain approximately 50% of the total variance in precipitation variability over the TP. These SEPs contribute 60%–90% of the spatial mean amplitude of precipitation trends across seasons. In particular, the second SEP that features a north‐south dipole pattern dominates the annual mean trend of the precipitation over the TP. The interdecadal variability of the seasonally evolving north‐south dipole pattern is linked to the interdecadal variations of summer Silk Road Pattern and Indian monsoon. These findings suggest that the climate variability expressed through SEPs could potentially serve as a significant source for the interdecadal rainfall prediction.

Funder

National Natural Science Foundation of China

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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