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in snow and ice and its impact on the cryosphere[J]. Earth Sci‐ break promotes grass growth on the Tibetan Plateau[J]. Journal
ence Reviews,210:103346. of Geophysical Research: Biogeosciences, 126, e2020JG00
Lei Y B,Zhu Y L,Wang B,et al,2019. Extreme lake level changes 5951.
on the Tibetan Plateau associated with the 2015/2016 El-Niño[J]. Su J Y,Duan A M,Xu H M,2017. Quantitative analysis of surface
Geophysical Research Letters,46(11):5889-5898. warming amplification over the Tibetan Plateau after the late
Li X,Zhang L,Luo T X,2020. Rainy season onset mainly drives the 1990s using surface energy balance equation[J]. Atmospheric
spatiotemporal variability of spring vegetation green-up across al‐ Science Letters,18(3):112-117.
pine dry ecosystems on the Tibetan Plateau[J]. Scientific Re‐ Sun J,Yang K,Wang Y,et al,2020. Why has the Inner Tibetan Pla‐
ports,10(1):18797. teau become wetter since the mid-1990s?[J]. Journal of Climate,
Li Y,Wang C H,Su F G,2021. Evaluation of CMIP6 Models over 33(19):8507-8522.
two third pole subregions withe contrasting circulation systems Tang W J,Yang K,Qin J,et al,2011. Solar radiation trend across
[J]. Journal of climate,34(22):9133-9152. China in recent decades:a revisit with quality-controlled data[J].
Lin C G,Yang K,Qin J,et al,2013. Observed coherent trends of sur‐ Atmospheric Chemistry and Physics,11(1):393-406.
face and upper-air wind speed over China since 1960[J]. Journal Wang C H,Zhao W,Cui Y,2020. Changes in the seasonally frozen
of Climate. 26(9):2891-2903. ground over the eastern Qinghai-Tibet Plateau in the past 60 years
Liu X D,Chen B D,2000. Climatic warming in the Tibetan Plateau [J]. Frontiers in Earth Science,8:270.
during recent decades[J]. International Journal of Climatology, Wang T H,Yang H B,Yang D W,et al,2018. Quantifying the
20(14):1729-1742. streamflow response to frozen ground degradation in the source
Liu X D,Cheng Z G,Yan L B,et al,2009. Elevation dependency of region of the Yellow River within the Budyko framework[J].
recent and future minimum surface air temperature trends in the Journal of Hydrology,558:301-313.
Tibetan Plateau and its surroundings[J]. Global & Planetary Xu B Q,Cao J J,Hansen J,et al,2009. Black soot and the survival
Change,68(3):164-174. of Tibetan glaciers[J]. Proceedings of the National Academy of
Liu X L,Liu Y M,Wang X C,et al,2020. Large‐scale dynamics and Sciences of the United States of America,106(52):22114-
moisture sources of the precipitation over the western Tibetan Pla‐ 22118.
teau in boreal winter[J]. Journal of Geophysical Research:Atmo‐ Xu X D,Lu C G,Shi X H,et al,2008. World water tower:An atmo‐
spheres,125(9):e2019JD032133. spheric perspective[J]. Geophysical Research Letters,35(20):
Liu Y M,Wu G X,Hong J L,et al,2012. Revisiting Asian monsoon L20815.
formation and change associated with Tibetan Plateau forcing:II. Xun X Y,Hu Z Y,Ma Y M,2012. The dynamic Plateau Monsoon In‐
Change[J]. Climate Dynamics,39(5):1183-1195. dex and its association with general circulation anomalies[J]. Ad‐
Luo S Q,Wang J Y,Pomeroy J W,et al,2020. Freeze-thaw changes vances in Atmospheric Sciences,29(6):1249-1263.
of seasonally frozen ground on the Tibetan Plateau from 1960 to Yang K,Wang C H,2019. Seasonal persistence of soil moisture anom‐
2014[J]. Journal of Climate,33(21):1-57. alies related to freeze-thaw over the Tibetan Plateau and predic‐
Ming J,Xiao C D,Cachier H,et al. 2009. Black carbon(BC)in the tion signal of summer precipitation in eastern China[J]. Climate
snow of glaciers in west China and its potential effects on albedos Dynamics,53(3/4):2411-2424.
[J]. Atmospheric Research,92(1):114-123. Yang K,Ding B H,Qin J,et al,2012. Can aerosol loading explain
Ouyang L,Yang K,Lu H,et al,2020. Ground-based observations re‐ the solar dimming over the Tibetan Plateau?[J]. Geophysical Re‐
veal unique valley precipitation patterns in the central Himalaya search Letters,39(20):L20710.
[J]. Journal of Geophysical Research:Atmospheres:125(5): Yang K,Wu H,Qin J,et al,2014. Recent climate changes over the
e2019JD031502. Tibetan Plateau and their impacts on energy and water cycle:A re‐
Piao S L,Liu Q,Chen A P,et al,2019. Plant phenology and global view[J]. Global and Planetary Change,112:79-91.
climate change:Current progresses and challenges[J]. Global Yao T D,Thompson L,Yang W,2012. Different glacier status with
Change Biology,25(6):1922-1940. atmospheric circulations in Tibetan Plateau and surroundings[J].
Qin J,Yang K,Liang S L,et al,2009. The altitudinal dependence of Nature Climate Change,2(9):663-667.
recent rapid warming over the Tibetan Plateau[J]. Climatic Yao T D,Xue Y K,Chen D L,et al,2019. Recent third pole's rapid
Change,97(1/2):321-327. warming accompanies cryospheric melt and water cycle intensifi‐
Ramanathan V,Ramana M V,Roberts G,et al,2007. Warming trends cation and interactions between monsoon and environment:
in Asia amplified by brown cloud solar absorption[J]. Nature, Multi-disciplinary approach with observations,modeling,and
448(7153):575-578. analysis[J]. Bulletin of the American Meteorological Society,
Rangwala I,Miller J R,Ming X,2009. Warming in the Tibetan Pla‐ 100(3),423-444.
teau:Possible influences of the changes in surface water vapor Yuan T G,Chen S Y,Wang L,et al,2020. Impacts of two East Asian
[J]. Geophysical Research Letters,36(6):L06703. atmospheric circulation modes on black carbon aerosol over the
Ren Y H,Yang K,Wang H,et al,2021. The South Asia monsoon Tibetan Plateau in winter[J]. Journal of Geophysical Research: