Impacts of radiative effect of pre-monsoon biomass burning aerosols on atmospheric circulation and rainfall over Southeast Asia and southern China

被引:0
作者
Sixiao Yang
William K. M. Lau
Zhenming Ji
Wenjie Dong
Song Yang
机构
[1] Sun Yat-Sen University,School of Atmospheric Sciences
[2] University of Maryland,Earth System Science Interdisciplinary Center
[3] Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai),Key Laboratory of Tropical Atmosphere
[4] Ministry of Education,Ocean System
[5] Sun Yat-Sen University,Guangdong Province Key Laboratory for Climate Change and Natural Disaster Studies
来源
Climate Dynamics | 2022年 / 59卷
关键词
Biomass burning; Aerosol radiative forcing; Rainfall; Regional circulation;
D O I
暂无
中图分类号
学科分类号
摘要
Biomass burning aerosols (BBA) emitted from Southeast Asia in boreal spring can alter the regional climate via their strong radiative effect. In this study, we have examined the radiative impacts of BBA on the atmospheric circulation and rainfall during the emission season (April–May) using the Weather Research and Forecasting model with chemistry module. Results show that the surface cooling and the atmospheric heating induced by the semi-direct radiative effect of BBA can exert regional heterogeneous influences on precipitation over Southeast Asia and downwind southern China, by disturbing the atmospheric stability, regional circulation and moisture transport. Increased stability (cooling below and warming above) within the planetary boundary layer inhibits local shallow convection and rainfall over mainland Southeast Asia, leading to a build-up of available convective potential energy that favors precipitation downstream in coastal South China. On the other hand, increased solar heating by absorbing aerosols can serve as an anomalous heat source in the low-mid troposphere, inducing a low-level cyclonic wind anomaly and convergence and a mid-level anticyclonic wind anomaly and divergence, along with strong ascending motion reaching the mid-high troposphere. Eventually, the modified stability and regional moisture transport lead to significant redistribution of precipitation. The enhanced (weakened) moist and warm southwesterly wind due to BBA increase (decrease) rainfall over the southern coast (northern inland) of southern China. Extremely, enhanced heavy rain events are found to be associated with an intensified low-level jet stream along coastal South China.
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页码:417 / 432
页数:15
相关论文
共 396 条
[71]  
Köhler M(2016)The relationship between the subtropical Western Pacific SST and haze over North-Central North China Plain Int J Climatol 93 165-undefined
[72]  
Matricardi M(2009)A modeling study of the effects of direct radiative forcing due to carbonaceous aerosol on the climate in east Asia Adv Atmos Sci 39 L9809-undefined
[73]  
McNally AP(2020)Aerosol characteristics and impacts on weather and climate over the Tibetan Plateau Natl Sci Rev undefined undefined-undefined
[74]  
Monge Sanz BM(2006)The interdecadal variations of the summer monsoon rainfall over South China Meteorol Atmos Phys undefined undefined-undefined
[75]  
Morcrette JJ(2012)Increases in aerosol concentrations over eastern China due to the decadal-scale weakening of the East Asian summer monsoon Geophys Res Lett undefined undefined-undefined
[76]  
Park BK(undefined)undefined undefined undefined undefined-undefined
[77]  
Peubey C(undefined)undefined undefined undefined undefined-undefined
[78]  
de Rosnay P(undefined)undefined undefined undefined undefined-undefined
[79]  
Tavolato C(undefined)undefined undefined undefined undefined-undefined
[80]  
Thépaut JN(undefined)undefined undefined undefined undefined-undefined