
陳寶君
教授/博士生導師
chenbj@cma.gov.cn
010-58995327
研究興趣
雲降水物理學,人工影響天氣
教育背景
1992-1996 南京氣象學院大氣物理系 大氣物理學與大氣環境專業 理學學士
1996-1999 南京氣象學院大氣物理系 大氣物理學與大氣環境專業 理學碩士
1999-2002 中國科學院南京地理與湖泊研究所 自然地理學專業 理學博士
研究經歷
2002-2006 南京大學大氣科學學院 講師
2006-2012 南京大學大氣科學學院 副教授
2012-2018 南京大學大氣科學學院 教授(四級)
2018-2020 南京大學大氣科學學院 教授(三級)
2020-2021 中國氣象科學研究院人工影響天氣中心 教授(三級)
2021-至 今 中國氣象局人工影響天氣中心 教授(二級)
承擔課題
國家重點研發計劃“重大自然災害防控與公共安全”重點專項項目“暖雲人工增雨關鍵技術”(2024-2026),項目負責人
國家重點研發計劃“重大自然災害監測預警與防範”重點專項項目“人工影響天氣技術集成綜合科學試驗與示範應用”(2020-2023),項目負責人
教學經歷
2006年9月 — 2019年12月✶,雲和降水物理,本科生,南京大學大氣科學學院
學術兼職
中國氣象學會人工影響天氣專業委員會主任委員,2024年至今
中國氣象局–成都信息工程大學人工影響天氣聯合研究中心學術委員會主任委員🫙,2019年12月至今
中國氣象局大氣探測重點開放實驗室學術委員會委員,2022年11月至今
中國氣象局航空氣象重點開放實驗室學術委員會委員,2022年11月至今
中國氣象局海峽災害天氣重點開放實驗室學術委員會委員,2022年11月至今
學術期刊《氣象》常務編委👩🏼🏫,2020年6月至今
學術期刊《應用氣象學報》常務編委,2021年8月至今
學術期刊《幹旱氣象》編委,2021年9月至今
學術期刊《氣象科學》常務編委,2023年9月至今
獲獎情況
2022年度中國氣象服務協會科學技術獎風雲人才獎
2014年度江蘇省科學技術獎一等獎(排名三)
發表論文
(本人名稱加粗,通訊作者加*號)
Yang, J., Qin, Z., Deng, Y., Chen, M., Jing, X., Yin, Y., Lu, C., Chen, B., Zhang, B., and Bao, X., 2024. On the cluster scales of hydrometeors in mixed‐phase stratiform clouds. Geophysical Research Letters, 51, e2024GL108166. https://doi.org/10.1029/2024GL108166.
Guo, L., J. Duan, X. Zhang, J. Li, K. Lyu, Y. Chang, G. Lu, D. Lin, T. Luan, X. Lou, and B. Chen*, 2024. Ground-based cloud microphysical observations at Mount Lu in the East Asian monsoon region from 2015 to 2020. Atmospheric Research, 307, 107482, https://doi.org/10.1016/j.atmosres.2024.107482
Huang, S., X. Jing, J. Yang, Q. Zhang, F. Guo, Z. Wang, and B. Chen, 2024. Modeling the Impact of Secondary Ice Production on the Charge Structure of a Mesoscale Convective System. Journal of Geophysical Research: Atmospheres, 129, e2023JD039303. https://doi.org/10.1029/2023JD039303
Hua. S., B. Chen*, H. He, et al., 2024. Numerical simulation of the cloud seeding operation of a convective rainfall event occurred in Beijing, Atmospheric Research, 304, 107386, https://doi.org/10.1016/j.atmosres.2024.10
花少烽, 查思佳, 陳寶君*. 2024. 環境濕度影響人工催化消減雨效果的數值模擬研究. 大氣科學, 48(2): 572−584.
Dong, Y., S. Hua, B. Chen*, H. Wang, and T. Hou, 2024. Numerical simulation of a pulse hailstorm in the plateau region in southwestern China. Atmospheric Research, 299, 107218, https://doi.org/10.1016/j.atmosres.2023.107218
Li, Y., Y. Liu, Y. Shi, B. Chen, F. Zeng, Z. Huo, and H. Fan, 2024. Probabilistic Convective Initiation Nowcasting Using Himawari-8 AHI with Explainable Deep Learning Models. Monthly Weather Review,152, 363–385. https://doi.org/10.1175/MWR-D-22-0216.1
Hua, S., B. Chen*, Y. Liu, et al., 2023. Evaluation of the Ice Particle Simulation of Microphysics Schemes with Aircraft Measurements of a Stratiform Cloud in North China. Journal of the Atmospheric Sciences, 80(6): 1635-1656.
Qu, Y., A. Khain, B. Chen*, L. Sun, and C. Meng, 2023. Aerosol indirect effects on water vapor in the UTLS ofTyphoon Saomai (2006). Journal of Geophysical Research: Atmospheres, 128, e2022JD037475. https://doi.org/10.1029/2022JD037475
Hou, T., B. Chen*, X. Zhou, et al., 2023. Aircraft-based observations of ice concentrations in a midlatitude mixed-phase stratiform cloud system with embedded convection. Atmospheric Research, 281, 106471, https://doi.org/10.1016/j.atmosres.2022.106471
Hou, T., B. Chen*, H. Lei, et al., 2023. Evaluation of the Predicted Particle Properties (P3) microphysics scheme in simulations of stratiform clouds with embedded convection. Adv. Atmos. Sci., 40: 1-18.
Huo, Z., Y. Liu, Y. Shi, B. Chen, H. Fan, and Y. Li. 2023. An Investigation on Joint Data Assimilation of a Radar Network and Ground-Based Profiling Platforms for Forecasting Convective Storms. Monthly Weather Review, 151, 2049–2064. https://doi.org/10.1175/MWR-D-22-0332.1
Liu, X., L. Xue, B. Chen*, and Y. Zhang, 2021: Characteristics of raindrop size distributions in Chongqing observed by a dense network of disdrometers. Journal of Geophysical Research: Atmospheres, 126, e2021JD035172. https://doi.org/10.1029/2021JD035172.
Qu, Y., Khain, A., Phillips, V., Ilotoviz, E., Shpund, J., Patade, S., and B. Chen, 2020: The role of ice splintering on microphysics of deep convective clouds forming under different aerosol conditions: Simulations using the model with spectral bin microphysics. Journal of Geophysical Research: Atmospheres, 125, e2019JD031312, https://doi.org/10.1029/2019JD031312.
Chen, B.*, J. Yang, R. Gao, K. Zhu, C. Zou, Y. Gong, and R. Zhang, 2020: Vertical variability of the raindrop size distribution in typhoons observed at the Shenzhen 356-m meteorological Tower. Journal of the Atmospheric Sciences, 77, 4171–4187, https://doi.org/10.1175/JAS-D-20-0043.1.
Hua, S., X. Xu, and B. Chen*, 2020: Influence of multiscale orography on the initiation and maintenance of a precipitating convective system in North China: A case study. Journal of Geophysical Research: Atmospheres, 125, e2019JD031731. https://doi.org/10.1029/2019JD031731.
Han, B., Fan, J., Varble, A., Morrison, H., Williams, C. R., Chen, B.*, et al., 2019: Cloud-resolving model intercomparison of an MC3E squall line case: Part II. Stratiform precipitation properties. Journal of Geophysical Research: Atmospheres, 124, 1090-1117, https://doi.org/10.1029/2018JD029596.
Fan, J., B. Han, A. Varble, H. Morrison, K. North, P. Kolas, B. Chen, et al., 2017: Cloud-Resolving Model Intercomparison of an MC3E Squall Line Case: Part I. Convective Updrafts. Journal of Geophysical Research: Atmospheres, 122, 9351–9378, https://doi.org/10.1002/2017JD026622.
Qu, Y., B. Chen*, J. Ming, B. H. Lynn, and M-J. Yang, 2017: Aerosol impacts on the structure, intensity, and precipitation of the landfalling Typhoon Saomai (2006). Journal of Geophysical Research: Atmospheres, 122, 11825–11842, https://doi.org/10.1002/2017JD027151.
Chen, B.*, Z. Hu, L. Liu, and G. Zhang, 2017: Raindrop size distribution measurements at 4,500 m on the Tibetan Plateau during TIPEX-III. Journal of Geophysical Research: Atmospheres, 122, 11092–11106, https://doi.org/10.1002/2017JD027233.
Chen, B.*, J. Wang, and D. Gong, 2016: Raindrop size distribution in a midlatitude continental squall line measured by Thies optical disdrometers over east China. Journal of Applied Meteorology and Climatology, 55, 621–634, https://doi.org/10.1175/JAMC-D-15-0127.1.
Zheng, K., and B. Chen*, 2014: Sensitivities of tornadogenesis to drop size distribution in a simulated subtropical supercell over eastern China. Adv. Atmos. Sci., 31(3), 657–668, doi: 10.1007/s00376-013-3143-7.
Chen, B.*, and Y. Yin, 2014: Can we modify stratospheric water vapor by deliberate cloud seeding?. Journal of Geophysical Research: Atmospheres, 119, 1406–1418, https://doi.org/10.1002/2013JD020707.
Chen, B.*, J. Yang, and J. Pu, 2013: Statistical Characteristics of Raindrop Size Distribution in the Meiyu Season Observed in Eastern China. Journal of the Meteorological Society of Japan, 91, 215–227, https://doi.org/10.2151/jmsj.2013-208.
Chen, B.*, W. Hu, and J. Pu, 2011: Characteristics of the raindrop size distribution for freezing precipitation observed in southern China. Journal of Geophysical Research, 116, D06201, https://doi.org/10.1029/2010JD015305.
Chen, B.*, and Y. Yin, 2011: Modeling the impact of aerosols on tropical overshooting thunderstorms and stratospheric water vapor. Journal of Geophysical Research, 116, D19203, https://doi.org/10.1029/2011JD015591.
Chen, B.*, and H. Xiao, 2010: Silver iodide seeding impact on the microphysics and dynamics of convective clouds in the high plains. Atmospheric Research, 96, 186–207, https://doi.org/10.1016/j.atmosres.2009.04.001.
查思佳⛹🏿♀️,張慧嬌🪄,李逍瀟🤾♀️,花少烽☮️,陳寶君*🐐,2020💆♂️:2014年南京青奧會開幕式日降水過程數值模擬研究. 大氣科學,44(6): 1258−1274.
王霽吟,陳寶君*🧏♀️👶🏼,鄭凱琳,花少烽😧,2019:雲滴數濃度對超級單體龍卷影響的數值模擬研究. 大氣科學,43(6): 1413−1423.
陳寶君*,等,2016❤️🛌🏽:暖底對流雲催化的微物理和動力效應的數值模擬. 大氣科學👈🏻,40(2): 271−288.
陳寶君*,鄭凱琳🤱🏼,郭學良🍀,2012🍎:超級單體風暴中大冰雹增長機製的模擬研究. 氣候與環境研究,17(6): 767−778.
鄭凱琳,陳寶君*🛶,2011:含水量累積區與冰雹增長行為之數值模擬. 大氣科學,35(2): 298−310.
出版書籍
1,楊軍🤤,陳寶君👩🏿🦱,銀燕,2011:雲降水物理學.北京🧝🏻♀️:氣象出版社.
其它情況
現任中國氣象局人工影響天氣中心總工程師、二級教授👃、博士生導師,中國氣象局雲降水物理與人工影響天氣重點開放實驗室主任,西北區域人工影響天氣工程總設計師,全國人工影響天氣科技咨詢評議委員會副主任兼秘書長,中國氣象局重點創新團隊“人工影響天氣作業效果檢驗技術團隊”首席科學家,國家重點研發計劃項目“人工影響天氣技術集成綜合科學試驗與示範應用”和“暖雲人工增雨關鍵技術”負責人兼首席科學家⛹🏼♂️。曾任南京大學大氣科學學院教授、博導🌜。主要從事雲降水物理學與人工影響天氣研究⏏️,研究興趣包括雲降水過程觀測與模擬🌨、人工影響天氣數值模式發展、作業效果檢驗技術研究等方面🤶🏿。兼任中國氣象局大氣探測、航空氣象、海峽災害天氣等重點實驗室學術委員會委員,學術期刊《氣象》、《應用氣象學報》🚂、《幹旱氣象》等編委。主持完成“973”課題1項✢、國家自然科學基金面上項目4項、中國氣象局創新發展專項等項目。發表論文近80篇,其中SCI論文30余篇,合作編寫教材和專著各1部。獲省部級科技進步獎一等獎1次⛓️💥、二等獎3次。2022年入選中國氣象局新時代氣象高層次科技創新人才計劃氣象領軍人才並被授予“國家級首席科學家”稱號🚣🏼,同年榮獲中國氣象服務協會風雲人才獎。作為專家多次受邀參加國家重大活動人工影響天氣保障服務,為第19屆亞運會組委會環境保障部特聘專家🧑🧒🧒。已指導博士和碩士研究生20多名。現為中國氣象科學研究院學術委員會和學位委員會委員。
#以上信息由本人提供,更新時間:2024/09/24