Decadal Surge in Tibetan Plateau 20–30‐Day Oscillation Intensity (1995–2005) Linked to Summer NAO Structure and Baroclinic Energy Conversion

Abstract The 20–30‐day intraseasonal oscillation (ISO) over the Tibetan Plateau (TP) significantly modulates summer precipitation, accounting for over 10% of regional rainfall variability. This study identifies a decadal intensification of the summer 20–30‐day ISO during 1995–2005 and examines its multidecadal covariation with the summer North Atlantic Oscillation (SNAO). The intensification coincides with a positive phase and eastward‐displaced SNAO, which facilitates enhanced Rossby wave propagation toward the central and eastern TP along the Eurasian waveguide. Rather than directly forcing intraseasonal variability, the SNAO modulates the local dynamical environment and vertical motion, thereby regulating the growth of the TP ISO. Energetic diagnostics reveal that baroclinic energy conversion plays a central role in sustaining the oscillation. Crucially, the SNAO‐induced forcing provides compensatory energy in the upper troposphere, preserving the vertical coherence and deep‐tropospheric structure of the ISO. These findings indicate that the decadal surge arises from frequency‐selective energy allocation and optimized growth conditions, highlighting the critical role of teleconnection morphology in shaping the TP hydroclimate.

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Publication Details

Journal
Journal of Geophysical Research Atmospheres
Published
2026-09-30
DOI
https://doi.org/10.1029/2026jd047302
Primary Topic
Climate variability and models
Type
article
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article

Decadal Surge in Tibetan Plateau 20–30‐Day Oscillation Intensity (1995–2005) Linked to Summer NAO Structure and Baroclinic Energy Conversion

Shunwu Zhou, Jianying Li, Meirong Wang, Yi-Xiang Wang et al.
Journal of Geophysical Research Atmospheres
Climate variability and models
article

Decadal Surge in Tibetan Plateau 20–30‐Day Oscillation Intensity (1995–2005) Linked to Summer NAO Structure and Baroclinic Energy Conversion

Shunwu Zhou, Jianying Li, Meirong Wang, Yi-Xiang Wang, Zhu Zhu, Anmin Duan, Xuepeng Cui
article en

Abstract

Abstract The 20–30‐day intraseasonal oscillation (ISO) over the Tibetan Plateau (TP) significantly modulates summer precipitation, accounting for over 10% of regional rainfall variability. This study identifies a decadal intensification of the summer 20–30‐day ISO during 1995–2005 and examines its multidecadal covariation with the summer North Atlantic Oscillation (SNAO). The intensification coincides with a positive phase and eastward‐displaced SNAO, which facilitates enhanced Rossby wave propagation toward the central and eastern TP along the Eurasian waveguide. Rather than directly forcing intraseasonal variability, the SNAO modulates the local dynamical environment and vertical motion, thereby regulating the growth of the TP ISO. Energetic diagnostics reveal that baroclinic energy conversion plays a central role in sustaining the oscillation. Crucially, the SNAO‐induced forcing provides compensatory energy in the upper troposphere, preserving the vertical coherence and deep‐tropospheric structure of the ISO. These findings indicate that the decadal surge arises from frequency‐selective energy allocation and optimized growth conditions, highlighting the critical role of teleconnection morphology in shaping the TP hydroclimate.

Journal of Geophysical Research AtmospheresVol. 131(19)
National University of Defense Technology (CN), Xiamen University (CN), Chinese Academy of Sciences (CN), Nanjing University of Information Science and Technology (CN), Chinese Academy of Meteorological Sciences (CN), Ministry of Education (BD), State Key Laboratory of Marine Environmental Science, State Key Laboratory of Severe Weather, Nanjing University (CN)
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Openalex Percentile: Top 15%
Climate variability and models
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