Numerical simulation for the coupling effect of local atmospheric circulations over the area of Beijing, Tianjin and Hebei Province

被引:0
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作者
ShuHua Liu
ZhenXin Liu
Ju Li
YinChun Wang
YanJun Ma
Li Sheng
HePing Liu
FuMing Liang
GuoJun Xin
JianHua Wang
机构
[1] School of Physics,Department of Atmospheric Sciences
[2] Peking University,Institute of Beijing Urban Meteorology
[3] China Meteorological Administration,Institute of Shenyang Atmospheric Environment
[4] China Meteorological Administration,Department of Physics, Atmospheric Sciences & General Science
[5] Jackson State University,undefined
关键词
Beijing-Tianjin-Hebei; Mountain Valley Breeze; Sea Land Breeze; urban heat island circulation; numerical simulation;
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中图分类号
学科分类号
摘要
Using the model system MM5.V3 and multi-layer grid nesting technique, we have done a multi-scale numerical simulation over the area of Beijing, Tianjin and Hebei Province to analyze the temperature and wind field there and study its local circulations. The results show a coupling effect of Urban Heat Island Circulation (UHIC), Mountain Valley Breeze (MVB) and Sea Land Breeze (SLB) occurs in this area when the synoptic system is weak. The SLB can penetrate deep into the mainland for about 200 km when it is blooming. MVB can extend to south and cover almost the whole plain area in Beijing. Both MVB and SLB are diurnal periodical; meanwhile the phase of MVB drops behind that of SLB for about six hours. As a local circulation, the UHIC weakens the two circulations above, and it also has a diurnal period. As a result, the coupling effect of circulations reveals not only different features in spring-summer period and autumn-winter period in a year but also the difference between early morning to noonday and afternoon to night in a day. We noted the diffusion of contamination over the area around Beijing, and found the steady presence of a transport routine of contamination over North-China throughout the year caused by the Coupling Effect mentioned above. This find is important for studying the environment pollution in this area.
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页码:382 / 392
页数:10
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