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高文華(Wenhua Gao)

  高文華

    研究員

whgao@cma.cn

010-58994210


研究方向

中尺度氣象學,雲降水物理學。研究興趣中小尺度對流降水機理及雲微物理過程數值模擬研究


教育背景

2006.02-2009.01🚵🏻‍♂️,中國科學院合肥物質科學研究院,大氣物理學與大氣環境,博士

2002.09-2005.06,蘭州大學🏦,氣象學,碩士

1989.09-1993.07,杭州大學🥧,氣象學,學士


研究經歷

2013.05-今,中國氣象科學研究院,,災害天氣國家重點實驗室, 副研究員👧🔨、研究員

2014.10-2015.10,美國西北太平洋國家實驗室(PNNL),訪問學者

2010.04-2011.11,臺灣大學大氣科學系👵🏻,博士後

2009.02-2013.05👩🏻‍🚒,國家衛星氣象中心👮🏽‍♀️,系統發展室,副研究員

1993.08-2006.11📕,山西省運城市氣象局🤜🏼,氣象臺,工程師、高級工程師


承擔課題

 1. 主持國家自然科學基金面上項目“基於大渦模擬的孤立深對流雲過程機製研究”🤦🏽,2023-2026

 2. 主持國家重點研發計劃項目課題“高原陸--雲過程對組織化對流系統發展的影響機理研究”🍕,2019-2021

 3. 主持國家自然科學基金面上項目“雲微物理過程對華南前汛期暴雨發生發展的影響機製研究”,2018-2021

4. 主持國家自然科學基金培育項目“多種設備聯合探測資料研究青藏高原對流雲的微物理參數化方案”,2015-2017


學術兼職

科技部國家重點研發計劃項目會評專家

教育部學位論文評審專家

中國氣象局重點創新團隊-邊界層氣象,,骨幹成員


發表論文

Gao, W., C. Li, and L. Tang, 2024: Numerical study on the impacts of hydrometeor processes on the “21.7” extreme rainfall in Zhengzhou area of China. Adv. Atmos. Sci., https://doi.org/10.1007/s00376-024-3365-x.

 Liao, C., W. Gao*, L. Tang, and C. Li, 2023: Long-term characteristics of hydrometeors in stratiform and convective precipitation over central eastern China and adjacent ocean. Atmospheric Research, 297, 107089.

 Tang, L., W. Gao*, L. Xue, G. Zhang, and J. Guo, 2023: Climatological characteristics of hydrometeors in precipitating clouds over eastern China and their relationship with precipitation based on ERA5 reanalysis. Journal of Applied Meteorology and Climatology, DOI 10.1175/JAMC-D-22-0076.1.

 Zhou, W., W. Gao*, C. Lu, and L. Tang, 2022: The impacts of hydrometeors and water vapor in stratiform region on the evolutions of MCSs and embedded convective cells in a pre-summer rainfall event over South China. J. Geophys. Res. Atmos., 127, e2021JD035543.

 Cheng, X., Y. Shi, and W. Gao*, 2022: A study of one local-scale convective precipitation event over central Tibetan Plateau with large eddy simulations. Earth and Space Science, 9, e2021EA001870.

 Zhao, D., W. Gao*, H. Xu*, Y. Yu, and L. Chen, 2022: A modeling study of cloud physical properties of extreme and non-extreme precipitation in landfalling typhoons over China. Atmospheric Research, 277, 106311.

 Li, J., W. Gao*, and F. Li, 2022: Water vapor and cloud microphysical characteristics of a sea-effect snowstorm in Shandong Peninsula, China. Journal of Atmospheric and Solar-Terrestrial Physics, 235, 105910.

Gao, W., L. Xue, L. Liu, C. Lu, Y. Yun, and W. Zhou, 2021: A study of the fraction of warm rain in a pre-summer rainfall event over South China. Atmospheric Research, 262, 105792.

 Deng, L., Y. Zhao, W. Gao*, L. Xue, and Y. Duan, 2021: Intensity and microphysical properties surrounding the rapid intensification in landfalling Super Typhoons over China during the summer and autumn seasons. International Journal of Climatology, 41, 6366-6381.

 Deng L., W. Gao*, Y. Duan, and C. Wu, 2020: A study of the effects of anthropogenic gaseous emissions on the microphysical properties of landfalling Typhoon Nida (2016) over China. Atmosphere, 11(12), 1322.

 Deng, L., W. Gao*, Y. Duan, 2019: A modeling study of the effects of vertical wind shear on the raindrop size distribution in typhoon Nida (2016). J. Geophys. Res. Atmos., 124, 6501-6517.

 Deng, L., W. Gao*, Y. Duan, and Y. Wang, 2019: Microphysical properties of rainwater in typhoon Usagi (2013): A numerical modeling study. Adv. Atmos. Sci., 36(5), 510-526.

Gao, W., L. Liu, J. Li, and C. Lu, 2018: The microphysical properties of convective precipitation over the Tibetan Plateau by a subkilometer resolution cloud-resolving simulation. J. Geophys. Res. Atmos., 123, 3212–3227.

Gao, W., C.-H. Sui, J. Fan, Z. Hu, and L. Zhong, 2016: A study of cloud microphysics and precipitation over the Tibetan Plateau by radar observations and cloud-resolving model simulations. J. Geophys. Res. Atmos., 121, 13735-13752.

Gao, W., J. Fan, R. C. Easter, Q. Yang, C. Zhao, and S. J. Ghan, 2016: Coupling spectral-bin cloud microphysics with the MOSAIC aerosol model in WRF-Chem: Methodology and results for marine stratocumulus clouds. J. Adv. Model. Earth Syst., 8, 1289-1309.



出版書籍

  1. 青藏高原氣候系統模式與數據同化及再分析♿️,氣象出版社,2023.08🫷🏻👱🏼,章節作者



  #以上信息由本人提供,更新時間:2024/09/25



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