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Impact of the Western Tibetan Vortex on Springtime Snow Cover Over the Western Tibetan Plateau
by
Li, Xiao‐Feng
, Yang, Song
, Fowler, Hayley J
, Wang, Jingzhi
, sythe, Nathan
in
Atmospheric circulation
/ Hydrologic cycle
/ Hydrological cycle
/ Snow
/ Snow cover
/ Snowfall
/ Tails
/ Variability
/ Vortices
/ Water vapor
/ Water vapor transport
/ Water vapour
2025
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Impact of the Western Tibetan Vortex on Springtime Snow Cover Over the Western Tibetan Plateau
by
Li, Xiao‐Feng
, Yang, Song
, Fowler, Hayley J
, Wang, Jingzhi
, sythe, Nathan
in
Atmospheric circulation
/ Hydrologic cycle
/ Hydrological cycle
/ Snow
/ Snow cover
/ Snowfall
/ Tails
/ Variability
/ Vortices
/ Water vapor
/ Water vapor transport
/ Water vapour
2025
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Impact of the Western Tibetan Vortex on Springtime Snow Cover Over the Western Tibetan Plateau
by
Li, Xiao‐Feng
, Yang, Song
, Fowler, Hayley J
, Wang, Jingzhi
, sythe, Nathan
in
Atmospheric circulation
/ Hydrologic cycle
/ Hydrological cycle
/ Snow
/ Snow cover
/ Snowfall
/ Tails
/ Variability
/ Vortices
/ Water vapor
/ Water vapor transport
/ Water vapour
2025
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Impact of the Western Tibetan Vortex on Springtime Snow Cover Over the Western Tibetan Plateau
Journal Article
Impact of the Western Tibetan Vortex on Springtime Snow Cover Over the Western Tibetan Plateau
2025
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Overview
Snow cover changes are of great importance to the hydrological cycle of the western Tibetan Plateau (TP). However, the influence of the atmospheric circulation on snow cover over the western TP is still unclear. This study finds that springtime snow cover variability over the western TP tail is significantly modulated by the Western Tibetan Vortex (WTV), which explains up to 40% variance. Cyclonic (anticyclonic) WTV variability generally causes water vapor convergence (divergence) and ascending (sinking) motions over the western TP tail, which thereby leads to more (less) snowfall and snow cover about one day later. Horizontal water vapor transport at the southern boundary of the western TP tail from the tropical Indian Ocean is key for the influence of the WTV. This study elucidates the impact of the WTV on springtime snow cover, which augments our understanding of the hydrological cycle over the western TP.
Publisher
John Wiley & Sons, Inc
Subject
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