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DOI10.5194/acp-20-4999-2020
Atmospheric teleconnection processes linking winter air stagnation and haze extremes in China with regional Arctic sea ice decline
Zou, Yufei1; Wang, Yuhang2; Xie, Zuowei3; Wang, Hailong1; Rasch, Philip J.1
2020-04-28
发表期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2020
卷号20期号:8页码:4999-5017
文章类型Article
语种英语
国家USA; Peoples R China
英文摘要

Recent studies suggested significant impacts of boreal cryosphere changes on wintertime air stagnation and haze pollution extremes in China. However, the underlying mechanisms of such a teleconnection relationship remains unclear. Here we use the Whole Atmosphere Community Climate Model (WACCM) to investigate dynamic processes leading to atmospheric circulation and air stagnation responses to Arctic sea ice changes. We conduct four climate sensitivity experiments by perturbing sea ice concentrations (SIC) and corresponding sea surface temperature (SST) in autumn and early winter over the whole Arctic and three subregions in the climate model. The results indicate distinct responses in circulation patterns and regional ventilation to the region-specific Arctic changes, with the largest increase of both the probability (by 132 %) and the intensity (by 30 %) of monthly air stagnation extremes being found in the experiment driven by SIC and SST changes over the Pacific sector of the Arctic (the East Siberian and Chukchi seas). The increased air stagnation extremes are mainly driven by an amplified planetary-scale atmospheric teleconnection pattern that resembles the negative phase of the Eurasian (EU) pattern. Dynamical diagnostics suggest that convergence of transient eddy forcing in the vicinity of Scandinavia in winter is largely responsible for the amplification of the teleconnection pattern. Transient eddy vorticity fluxes dominate the transient eddy forcing and produce a barotropic anticyclonic anomaly near Scandinavia and wave train propagation across Eurasia to the downstream regions in East Asia. The piecewise potential vorticity inversion analysis reveals that this long-range atmospheric teleconnection of Arctic origin takes place primarily via the middle and upper troposphere. The anomalous ridge over East Asia in the middle and upper troposphere worsens regional ventilation conditions by weakening monsoon northwesterlies and enhancing temperature inversions near the surface, leading to more and stronger air stagnation and pollution extremes over eastern China in winter. Ensemble projections based on state-of-the-art climate models in the Coupled Model Intercomparison Project Phase 6 (CMIP6) corroborate this teleconnection relationship between high-latitude environmental changes and midlatitude weather extremes, though the tendency and magnitude vary considerably among each participating model.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000531492900002
WOS关键词NORTH CHINA ; BLACK CARBON ; POLLUTION ; CLIMATE ; EMISSIONS ; VARIABILITY ; WEATHER ; IMPACT ; AMPLIFICATION ; CIRCULATION
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/248890
专题地球科学
作者单位1.Pacific Northwest Natl Lab, Atmospher Sci & Global Change Div, Richland, WA 99354 USA;
2.Georgia Inst Technol, Sch Earth & Atmospher Sci, Atlanta, GA 30332 USA;
3.Chinese Acad Sci, Int Ctr Climate & Environm Sci, Inst Atmospher Phys, Beijing 100029, Peoples R China
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Zou, Yufei,Wang, Yuhang,Xie, Zuowei,et al. Atmospheric teleconnection processes linking winter air stagnation and haze extremes in China with regional Arctic sea ice decline[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2020,20(8):4999-5017.
APA Zou, Yufei,Wang, Yuhang,Xie, Zuowei,Wang, Hailong,&Rasch, Philip J..(2020).Atmospheric teleconnection processes linking winter air stagnation and haze extremes in China with regional Arctic sea ice decline.ATMOSPHERIC CHEMISTRY AND PHYSICS,20(8),4999-5017.
MLA Zou, Yufei,et al."Atmospheric teleconnection processes linking winter air stagnation and haze extremes in China with regional Arctic sea ice decline".ATMOSPHERIC CHEMISTRY AND PHYSICS 20.8(2020):4999-5017.
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