Stratospheric Quasi‐Biennial Oscillation Modulates Tropical Cyclone Extreme Rainfall Over East Asia via Intraseasonal Oscillation

Abstract Tropical cyclone (TC)‐induced extreme precipitation (TCEP) poses heavy risks, yet its seasonal predictability remains limited by insufficient understanding of cross‐scale climatic drivers. Here, we elucidate a stratosphere‐to‐stratosphere coupling pathway where the quasi‐biennial oscillation (QBO) modulates TC activity and subsequent TCEP over the southeastern coast of China, with the second boreal summer intraseasonal oscillation mode (BSISO2) acting as a critical mediator. The westerly QBO phase reshapes the spatial structure of BSISO2 during its Phases 4–6, creating favorable dynamical conditions and moisture convergence that nearly double TCEP over the southeastern China coast relative to the easterly QBO phase. Statistical fitting results further show that incorporating the QBO signal substantially improves seasonal TCEP predictability beyond conventional El Niño‐Southern Oscillation predictors. These findings establish the QBO as a coherent stratospheric driver for TCEP, providing a mechanistic basis for enhanced seasonal TCEP prediction and regional disaster preparedness.

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Publication Details

Journal
Geophysical Research Letters
Published
2026-09-06
DOI
https://doi.org/10.1029/2026gl124149
Primary Topic
Tropical and Extratropical Cyclones Research
Type
article
Field-Weighted Citation Impact
0.00

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article

Stratospheric Quasi‐Biennial Oscillation Modulates Tropical Cyclone Extreme Rainfall Over East Asia via Intraseasonal Oscillation

Fang Zhou, Zhicong Yin, Minghong Liu, Xiaomin Wang
Geophysical Research Letters
Tropical and Extratropical Cyclones Research
article

Stratospheric Quasi‐Biennial Oscillation Modulates Tropical Cyclone Extreme Rainfall Over East Asia via Intraseasonal Oscillation

Fang Zhou, Zhicong Yin, Minghong Liu, Xiaomin Wang
article en

Abstract

Abstract Tropical cyclone (TC)‐induced extreme precipitation (TCEP) poses heavy risks, yet its seasonal predictability remains limited by insufficient understanding of cross‐scale climatic drivers. Here, we elucidate a stratosphere‐to‐stratosphere coupling pathway where the quasi‐biennial oscillation (QBO) modulates TC activity and subsequent TCEP over the southeastern coast of China, with the second boreal summer intraseasonal oscillation mode (BSISO2) acting as a critical mediator. The westerly QBO phase reshapes the spatial structure of BSISO2 during its Phases 4–6, creating favorable dynamical conditions and moisture convergence that nearly double TCEP over the southeastern China coast relative to the easterly QBO phase. Statistical fitting results further show that incorporating the QBO signal substantially improves seasonal TCEP predictability beyond conventional El Niño‐Southern Oscillation predictors. These findings establish the QBO as a coherent stratospheric driver for TCEP, providing a mechanistic basis for enhanced seasonal TCEP prediction and regional disaster preparedness.

Geophysical Research LettersVol. 53(17)
China Meteorological Administration (CN), Nanjing University of Information Science and Technology (CN), Chinese Academy of Meteorological Sciences (CN), Ministry of Education (BD)
National Natural Science Foundation of China
Climate action
Openalex Percentile: Top 15%
Tropical and Extratropical Cyclones Research
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Stratospheric Quasi‐Biennial Oscillation Modulates Tropical Cyclone Extreme Rainfall Over East Asia via Intraseasonal Oscillation — Fang Zhou, Zhicong Yin, et al. · Geophysical Research Letters (2026) | TGRS Research Map | TGRS