Observation-based Estimation of Aerosol-induced Reduction of Planetary Boundary Layer Height

被引:0
|
作者
Jun ZOU [1 ,2 ]
Jianning SUN [1 ,2 ]
Aijun DING [1 ,2 ]
Minghuai WANG [1 ,2 ]
Weidong GUO [1 ,2 ]
Congbin FU [1 ,2 ]
机构
[1] School of Atmospheric Sciences and Institute for Climate and Global Change,Nanjing University
[2] Joint International Research Laboratory of Atmospheric and Earth System Sciences of Ministry of Education,Nanjing University
基金
中国国家自然科学基金;
关键词
aerosol; radiation; atmospheric stability; surface sensible heat flux; planetary boundary layer height;
D O I
暂无
中图分类号
X513 [粒状污染物];
学科分类号
0706 ; 070602 ;
摘要
Radiative aerosols are known to influence the surface energy budget and hence the evolution of the planetary boundary layer. In this study, we develop a method to estimate the aerosol-induced reduction in the planetary boundary layer height(PBLH) based on two years of ground-based measurements at a site, the Station for Observing Regional Processes of the Earth System(SORPES), at Nanjing University, China, and radiosonde data from the meteorological station of Nanjing. The observations show that increased aerosol loads lead to a mean decrease of 67.1 W m-2for downward shortwave radiation(DSR) and a mean increase of 19.2 W m-2for downward longwave radiation(DLR), as well as a mean decrease of 9.6W m-2for the surface sensible heat flux(SHF) in the daytime. The relative variations of DSR, DLR and SHF are shown as a function of the increment of column mass concentration of particulate matter(PM2.5). High aerosol loading can significantly increase the atmospheric stability in the planetary boundary layer during both daytime and nighttime. Based on the statistical relationship between SHF and PM2.5column mass concentrations, the SHF under clean atmospheric conditions(same as the background days) is derived. In this case, the derived SHF, together with observed SHF, are then used to estimate changes in the PBLH related to aerosols. Our results suggest that the PBLH decreases more rapidly with increasing aerosol loading at high aerosol loading. When the daytime mean column mass concentration of PM2.5reaches 200 mg m-2, the decrease in the PBLH at 1600 LST(local standard time) is about 450 m.
引用
收藏
页码:1057 / 1068
页数:12
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