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5篇 您的检索式:作者名="Wupeng DU"
    题名 作者 年代 出处 被引量
1Advances in Urban Meteorological Research in China显示文摘Over the past decades,a large number of studies have been carried out in the field of urban meteorology in China.This paper summarizes the main progress in urban meteorology research from four aspects:urban meteorological observation network and field campaign,multi-scale model of urban meteorology,interaction between urban meteorology and atmospheric environment,and the impacts of urbanization on weather and climate.Major advances are as follows.China’s major cities have established or are improving comprehensive urban meteorological observation networks characterized by multi-platform,multi-variable,multi-scale,multi-link,and multi-function.Beijing,Nanjing,Shanghai,and other cities carried out urban meteorological field campaigns,which were included in the WMO research demonstration project.Wind tunnel experiments and scale-model outdoor experiments were successfully conducted.Multi-scale urban meteorological and air quality prediction numerical model systems have been developed and put into operational use.The urban heat island effect;urban impacts on precipitation,regional climate,and air quality;urban planning;and interaction between urban meteorology and atmospheric environment are extensively investigated.Finally,efforts to improve observational technology,data assimilation,and urban system modeling,to explore the impacts of urbanization on environment and human health,and to provide integrated urban hydro-meteorological climate and environmental services are planned ahead.Shiguang MIAO Weimei JIANG Ping LIANG Hongnian LIU Xuemei WANG Jianguo TAN Ning ZHANG Ju LI Wupeng DU Lin PEI 2020Journal of Meteorological Research2020,34,2:2
2Photometricmeasurements of spring aerosol optical properties in dust and non-dust periods in China 显示文摘DU Wupeng XIN Jinyuan WANG Mingxing 2008Atmos Environ2008,42,34:1
3Aerosol Optical Properties Aected by a Strong Dust Storm over Central and Northern China显示文摘Xin Jinyuan Du Wupeng Wang Yuesi Gao Qingxian Zhanqing LI and Wang Mingxing 2010Advances in Atmospheric Sciences 27(3)2010,113,:1
4Photometricmeasurements of spring aerosol optical properties in dust and non-dust periods in China 显示文摘DU Wupeng XIN Jinyuan WANG Mingxing 2008Atmos Environ2008,42,34:1
5Assessment of Urban Climate Environment and Configuration of Ventilation Corridor:A Refined Study in Xi'an显示文摘Integrating urban spatial landscape(USL) parameters into refined climate environment assessment is important. By taking the central urban area(CUA) of Xi’an, China as an example, this study develops an evaluation method based on Urban Climatic Map(UCMap) technology. We define surface urban heat island intensity(SUHI) and surface ventilation potential coefficient(VPC), which can effectively reflect local urban climate. Based on SUHI and VPC,we analyze the influences of seven typical USL metrics including building height(BH), building density(BD), floor area ratio(FAR), sky view factor(SVF), frontal area index(FAI), surface roughness length(RL), and vegetation cover(VC). Then, we construct a comprehensive evaluation model and create an urban climate zoning map on a 100-m resolution. The climate optimization on the map is performed for configuration of possible ventilation corridors and identification of associated control indicators. The results show that the main factors affecting SUHI in the CUA of Xi’an are VC and BD, which explain 87.9% of the variation in SUHI, while VPC explains 50% of the variation in SUHI. The main factors affecting VPC are BH, FAR, FAI, and RL, all of which contribute to more than 95% of the variation in VPC. The evaluation model constructed by SUHI, VPC, and VC can divide the CUA into climate resource spaces, climate preservation spaces, climate sensitive spaces, and climate restoration spaces. On this basis, a ventilation corridor network of 3 level-1 corridors(each over 500 m wide), 6 level-2 corridors(each over 500 m wide) and 13 level-3 corridors(each over 50 m wide) is established. Meanwhile, the main quantitative control indicators selected from the USL metrics are proved to be capable of ensuring smooth implementation of the planned corridors at different levels.Bing DANG Yonghong LIU Hongliang LYU Xia ZHOU Wupeng DU Chunyi XUAN Pei XING Ruozi YANG Feilin XIONG 2022Journal of Meteorological Research2022,36,6:0
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