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Featured researches published by Tianhe Wang.


Journal of Geophysical Research | 2014

Climate effects of dust aerosols over East Asian arid and semiarid regions

Jianping Huang; Tianhe Wang; Wencai Wang; Zhanqing Li; Hongru Yan

East Asia is a major dust source in the world. Mineral dusts in the atmosphere and their interactions with clouds and precipitation have great impacts on regional climate in Asia, where there are large arid and semiarid regions. In this review paper, we summarize the typical transport paths of East Asian dust, which affect regional and global climates, and discuss numerous effects of dust aerosols on clouds and precipitation primarily over East Asian arid and semiarid regions. We hope to provide a benchmark of our present understanding of these issues. Compared with the aerosols of Saharan dust, those of East Asian dust are more absorptive of solar radiation, and its direct radiative forcing at the top of atmosphere is nearly positive or nil. It means that aerosols of East Asian dust can influence the cloud properties not only by acting as cloud condensation nuclei and ice nuclei (via first indirect effect, second indirect effect, and invigoration effect) but also through changing the relative humidity and stability of the atmosphere (via semidirect effect). Converting visible light to thermal energy, dust aerosols can burn clouds to produce a warming effect on climate, which is opposite to the first and second indirect effects of aerosols. The net dust aerosol radiative effects are still highly unclear. In addition, dust can inhibit or enhance precipitation under certain conditions, thus impacting the hydrological cycle. Over Asian arid and semiarid regions, the positive feedback loop in the aerosol-cloud-precipitation interaction may aggravate drought in its inner land.


Geophysical Research Letters | 2006

Possible influences of Asian dust aerosols on cloud properties and radiative forcing observed from MODIS and CERES

Jianping Huang; Patrick Minnis; Bing Lin; Tianhe Wang; Yuhong Yi; Yongxiang Hu; Sunny Sun-Mack; Kirk Ayers


Geophysical Research Letters | 2006

Satellite-based assessment of possible dust aerosols semi-direct effect on cloud water path over East Asia

Jianping Huang; Bing Lin; Patrick Minnis; Tianhe Wang; Xin Wang; Yongxiang Hu; Yuhong Yi; J. Kirk Ayers


Journal of Geophysical Research | 2010

Dusty cloud properties and radiative forcing over dust source and downwind regions derived from A‐Train data during the Pacific Dust Experiment

Wencai Wang; Jianping Huang; Patrick Minnis; Yongxiang Hu; Jiming Li; Zhongwei Huang; J. Kirk Ayers; Tianhe Wang


Atmospheric Chemistry and Physics | 2015

A global survey of cloud overlap based on CALIPSO and CloudSat measurements

Jinliang Li; Jianping Huang; Knut Stamnes; Tianhe Wang; Qiaoyi Lv; Hongchun Jin


Remote Sensing of Environment | 2011

Comparison of CERES surface radiation fluxes with surface observations over Loess Plateau

Hongru Yan; Jianping Huang; Patrick Minnis; Tianhe Wang; Jianrong Bi


Atmospheric Chemistry and Physics | 2010

The effects of clouds and aerosols on net ecosystem CO 2 exchange over semi-arid Loess Plateau of Northwest China

X. Jing; Jianping Huang; Guoyin Wang; K. Higuchi; Jianrong Bi; Y. Sun; H. Yu; Tianhe Wang


Journal of Quantitative Spectroscopy & Radiative Transfer | 2015

Comparison of CERES-MODIS cloud microphysical properties with surface observations over Loess Plateau

Hongru Yan; Jianping Huang; Patrick Minnis; Yuhong Yi; Sunny Sun-Mack; Tianhe Wang; Takashi Y. Nakajima


Geophysical Research Letters | 2013

A new approach to retrieve cloud base height of marine boundary layer clouds

Jiming Li; Y. H. Yi; Knut Stamnes; X. D. Ding; Tianhe Wang; Hongchun Jin; S. S. Wang


Journal of Geophysical Research | 2014

Climate effects of dust aerosols over East Asian arid and semiarid regions: Climate effects of East Asian dust

Jianping Huang; Tianhe Wang; Wencai Wang; Zhanqing Li; Hongru Yan

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Wencai Wang

Ocean University of China

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Yongxiang Hu

Langley Research Center

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Bing Lin

Langley Research Center

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Knut Stamnes

Stevens Institute of Technology

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