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Featured researches published by Chen Yonghang.


Journal of meteorological research | 2016

Comparison of Vertical Distribution of Optical Properties of Aerosols between Haze and Floating Dust Weather in Shanghai Based on Micro Pulse Lidar

Liu Qiong; Wang Yuan; Kuang Zhongyu; Fang Sihua; Chen Yonghang; Kang Yan-ming

A comparative study on the vertical distributions of aerosol optical properties during haze and floating dust weather in Shanghai was conducted based on the data obtained from a micro pulse lidar. There was a distinct difference in layer thickness and extinction coefficient under the two types of weather conditions. Aerosols were concentrated below 1 km and the aerosol extinction coefficients ranged from 0.25 to 1.50 km−1 on haze days. In contrast, aerosols with smaller extinction coefficients (0.20–0.35 km−1) accumulated mainly from the surface to 2 km on floating dust days. The seasonal variations of extinction and aerosol optical depth (AOD) for both haze and floating dust cases were similar—greatest in winter, smaller in spring, and smallest in autumn. More than 85% of the aerosols appeared in the atmosphere below 1 km during severe haze and floating dust weather. The diurnal variation of the extinction coefficient of haze exhibited a bimodal shape with two peaks in the morning or at noon, and at nightfall, respectively. The aerosol extinction coefficient gradually increased throughout the day during floating dust weather. Case studies showed that haze aerosols were generated from the surface and then lifted up, but floating dust aerosols were transported vertically from higher altitude to the surface. The AOD during floating dust weather was higher than that during haze. The boundary layer was more stable during haze than during floating dust weather.


China Environmental Science | 2009

Vertical distribution characteristics of aerosol during a long-distance transport of heavy dust pollution.

Chen Yonghang; Mao Xiao-qin; Huang Jianping; Zhang Hua; Tang Qiang; Pan Hu; Wang ChenHao


Plateau Meteorology | 2005

Temporal and Spatial Distributions of Cloud Water Resources over Northwestern China

Chen Yonghang; Huang Jianping; Chen Chang-he; Zhang Qiang; Feng Jiandong; Jin Hong-chun; Wang Tianhe


Research of Soil and Water Conservation | 2013

Analysis on Potential of Water Resources in Lower Layer Clouds in City Area of Xinjiang

Aliya・Baidurela; Ümüt Halik; Chen Yonghang; Cui Caixia; Aigvzal; Kahar・Zhayim


China Environmental Science | 2010

Influence of dust aerosols on cloud radiative forcing over Northern China

Jia Xuan; Wang Wencai; Chen Yonghang; Huang Jianping; Chen Jian-min; Zhang Hua; Bai Hongtao; Zhang Ping


Plateau Meteorology | 2007

Distribution and Variation Trend of Cloud over Northwestern China

Chen Yonghang


Redai Haiyang Xuebao | 2016

熱帯低気圧」SAOMEI(2006)」氷雲微物理属性の垂直分布を【JST・京大機械翻訳】

Zhang Lei; Shi Lanhong; Xu Jian; Sun Ran; Zhao Bingke; Chen Yonghang; Wang Xiaofeng; Wang Wencai; Li Meng; Ding Mingyue


Qixiang Xuebao | 2016

上海における煙霧と粉塵気象時のエアロゾルの光学的性質の垂直分布【Powered by NICT】

Liu Qiong; Wang Yuan; Kuang Zhongyu; Fang Sihua; Chen Yonghang; Kang Yan-ming; Zhang Hua; Wang Daoyuan; Fu Yingying


Lanzhou Daxue Xuebao Zirankexueban | 2016

雲中の冰粒子数濃度は,強い降雨過程における垂直分布特性によって減少した。【JST・京大機械翻訳】

Liu Yan; Ding Mingyue; Qiu Xuexing; Chen Yonghang; Zhang Ping; Li Meng; Wang Hongyu; Yang Xian


Huanjing Kexue Xuebao | 2016

省省Hu春節爆竹花火の鉛直大気への影響【JST・京大機械翻訳】

Ding Mingyue; Liu Haichen; Xu Jian; Chen Yonghang; Zhao Bingke; Zhang Hua; Zhang Ning

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Fang Sihua

City University of New York

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Guo Ni

China Meteorological Administration

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Lin Xiong

China Meteorological Administration

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Mao Xiao-qin

China Meteorological Administration

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