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赵阳
职称:教授
单位:中国海洋大学
社会任职:第二届气候变化科学大会学术委员会委员;中国气象协会动力气象委员会委员;山东省气象学会会员等

个人简介

赵阳,理学博士,教授,博士生导师,中国海洋大学“中青年英才工程”第一层次人才、山东省“泰山学者”青年专家。先后在斯德哥尔摩大学、哥德堡大学访问研究,在麦吉尔大学、首尔国立大学、香港科技大学从事博士后研究工作。主要聚焦于青藏高原动力学,极端天气事件归因以及深度学习在气象学中的实践应用的研究。相关成果以第一或通讯作者在 npj Climate and Atmospheric Science、Journal of Climate、Journal of Geophysical Research: Atmospheres、Journal of the Atmospheric Sciences、Climate Dynamics、Environmental Research Letters等国际高水平期刊上发表 SCI 论文 30 余篇,其中 8 篇入选 ESI 高被引论文,1 篇入选 ERL期刊年度高亮文章,3 篇被韩国延世大学评选为对大气科学做出突出贡献的亮点文章,1 篇被视频网站 YouTube 中的 AI for Climate Change报导。1 篇文章获得 Wiley 出版社高关注奖,1 篇文章获得 Wiley 出版社突出贡献奖。主持项目包括国家博士后海外引才专项、山东省优秀青年基金项目(海外)、山东省青年泰山学者专项等。第二届气候变化科学大会学术委员会委员;中国气象协会动力气象委员会委员;山东省气象协会会员;中国国际经济技术合作促进会标准化工作委员会专家库专家;中国海洋大学碳中和中心学术委员会秘书;国际期刊 Machine learning: Earth编委。以第一发明人授权国家发明专利软著 2 项,参与制定国家团体标准 1 项。

教育经历

  • 2016.09—2019.06:中国气象科学研究院&南京信息工程大学,博士
  • 2013.09—2016.06:中国气象科学研究院,硕士
  • 2009.09—2013.06:成都信息工程大学,学士

学术贡献

  • (部分文章)
  • (1)Zhao Y*, Chen DL, Shen C. 2026: Quantifying the Impact of Migratory Low-Pressure Systems on Lower Yangtze River Heavy Rainfall. Weather and Climate Extremes. In Preparation.
  • (2)Zhao RC, Zhao Y*. 2026: Dynamic Relationship between Atmospheric Rivers and Synoptic-Scale Vortices: Cause, Feedback, or Co-Evolution in the Lower Yangtze River? Weather and Climate Extremes. In Preparation.
  • (3)Zhao Y, Li JP, Guo LY, Li J, Bao XH, Feng XX. 2026: Heavy Rainfall in the Lower Yangtze River Basin: A Synoptic Examination of Atmospheric River Thermodynamic and Dynamic Contributions. Journal of Climate. Under review.
  • (4)Feng XX, Zhao Y, Li JP. 2025: East Asia Multi-type Atmospheric River Extreme Precipitation Dataset.
  • (5)Zhao Y, Li JP, Ding QH, Qi X, Tian Y, Chen DD, Wang QX. 2026: Deciphering the Poleward Shift of Atmospheric Rivers: Unraveling Meteorological Factors Governing Three-Dimensional Intensity Structure. Nature Communications. In Preparation.
  • (6)Tian Y, Lianyi Guo, Yazhou Zhang, Xinxin Tang, Zhao Y, Jianping Li. 2025: Disclosing local drivers for extreme precipitation forecast in the Asian monsoon region with explainable artificial intelligence. Environmental Research Letters. In Preparation.
  • (7)Zhao Y, Li JP, Zhang YZ, Feng XX, Tang XX, Qi X, Chen JH, Deng L. 2026: Unraveling the Causes of Atmospheric Rivers Related Extreme Precipitation Based on Its Objective Definition in the Lower Yangtze River Basin. Journal of Climate. In Preparation.
  • (8)Liu Y, Li JP, Zhao Y, Zhao HY, DeLarme E. 2026: The energy-pump mechanism behind Dubai “16.4” record-breaking rainfall. Monthly Weather Review. Submitted.
  • (9)Wang M, Chen XY, Liu YQ, Zhao Y, Wang YJ, Huang GR, Feng XX. 2026: How has and will vegetation net primary productivity respond to drought-flood dynamics in Guangdong Province of South China? Climate Services. Submitted.
  • (10)Tian Y, Zhao Y, Li JP, Shen C, Zhang YZ, Wen DW, Qi X, Liu Y, Chen DD. 2026: Explainable Artificial Intelligence Identifies Key Meteorological Drivers of Extreme Precipitation in the Asian Monsoon Region. Atmospheric Research. https://doi.org/10.1016/j.atmosres.2026.108809. [ESI 前1%的高被引论文]
  • (11)Li J, Zhao Y, Li JP, Guo LY, Shen C, Zhang LJ, Deng L, Chen DD. 2026: Deciphering the Shift in Extreme Precipitation over the lower reaches of the Yangtze River Basin: A Synoptic-Scale Analysis. Climate Dynamics. https://doi.org/10.1007/s00382-026-08059-6. [ESI 前1%的高被引论文]
  • (12)Xu HX, Zhao Y*, Zhao DJ, Duan YH, Xu XD. 2025: Exploring the Typhoon Intensity Forecasting through Integrating AI Weather Forecasting with Regional Numerical Weather Model. npj Climate and Atmospheric Science. https://doi.org/10.1175/s41612-025-00926-z. [ESI 前1%的高被引论文][被 YouTube 视频网站 AI for Climate Change 报导]
  • (13)Zhao Y, Lu MQ, Zhang LJ, Cheng TF. 2025: Remote Influence of Southern Tibetan Plateau Heating on North Pacific Atmospheric Rivers. Journal of Climate. https://doi.org/10.1175/JCLI-D-23-0706.1.[ESI 前1%的高被引论文]
  • (14)Zhao Y, Lu MQ, Chen DL, Zhang LJ. 2025: Understanding the weakening patterns of inner Tibetan Plateau vortices. Environmental Research Letters. https://doi.org/10.1088/1748-9326/ad5193. [ESI 前1%的高被引论文]
  • (15)Tian Y, Zhao Y, Li JP, Xu HX, Zhang C, Deng L, Wang YJ, Peng M. 2024: Improving CMIP6 Atmospheric River Precipitation Estimation by Cycle-Consistent Generative Adversarial Networks. Journal of Geophysical Research: Atmospheres. https://doi.org/10.1029/2023JD040698.[ESI 前1%的高被引论文][荣获 Wiley 出版社突出贡献奖][被韩国延世大学评选为对大气科学做出突出贡献的亮点文章]
  • (16)Zhao Y, Li JP, Tian Y, Li J. 2024: Distinguish Extreme Precipitation Mechanisms Associated with Atmospheric River and Non-Atmospheric River in the Lower Yangtze River Basin. Journal of Climate. https://doi.org/10.1175/JCLI-D-23-0400.1.[ESI 前1%的高被引论文]
  • (17)Xu HX, Zhao Y*, Zhao DJ, Duan YH, Xu XD. 2024: Improvement of Disastrous Extreme Precipitation Forecasting in North China by Pangu-Weather AI-Driven Regional WRF Model. Environmental Research Letters. https://doi.org/10.1088/1748-9326/ad41f0.[ESI 前1%的高被引论文]ERL 期刊年度高亮文章
  • (18)Tian Y, Zhao Y*, Li JP, Chen B, Deng L, Wen DW. 2024: East Asia Atmospheric River Forecast with a Deep Learning Method: GAN-UNet. Journal of Geophysical Research: Atmospheres.
  • https://doi.org/10.1029/2023JD039311. [被韩国延世大学评选为对大气科学做出突出贡献的亮点文章]。
  • (19) Li J, Zhao Y*, Chen DL, Zhao P, Zhang C, Wang YJ. 2024: The quantitative role of moisture and vertical motion in shaping summer heavy rainfall over North China under two distinct large-scale weather patterns. Journal of Climate. https://doi.org/10.1175/JCLI-D-22-0850.1.[ESI 前 1%的高被引论文][被韩国延世大学评选为对大气科学做出突出贡献的亮点文章]
  • (20) Tian Y, Zhao Y*, Son S-W, Luo JJ, Oh S-G, Wang YJ. 2023: A Deep-Learning Ensemble Method to Detect Atmospheric Rivers and Its Application to Projected Changes in Precipitation Regime. Journal of Geophysical Research: Atmospheres. https://doi.org/10.1029/2022JD037041.[ESI 前 1%的高被引论文][荣获 Wiley 出版社高关注奖]
  • (21) Zhao Y, Son S-W, Back S-Y. 2023: The role of the upper-level potential vorticity streamer on the China Henan “21.7” extreme precipitation event. SOLA. https://doi.org/10.2151/sola.2023-006.
  • (22) Zhao Y, Park C, Son S-W. 2022: Importance of Diabatic Heating for the Eastward-Moving Heavy Rainfall Events along the Yangtze River. Journal of the Atmospheric Sciences. https://doi.org/10.1175/JAS-D-21-0321.1.
  • (23) Zhao Y*, Deng L, Li ZW, Wang YJ. 2022. Quantitative attribution of vertical motion responsible for summer heavy rainfall over North China. Journal of Geophysical Research:Atmospheres. https://doi.org/10.1029/2021JD035765.
  • (24) Zhao Y, Chen DL, Deng Y, Son S-W, Wang X, Di D, Pan MT, Ma XD. 2021:How were the eastward-moving heavy rainfall events from the Tibetan Plateau to the lower reaches of the Yangtze River enhanced? Journal of Climate. https://doi.org/10.1175/JCLI-D-20-0226.1.
  • (25) Li J, Zhao Y, Chen DL. Wang H. 2021. Future precipitation changes in three key sub-regions of East Asia: the roles of thermodynamics and dynamics. Climate Dynamics. https://doi.org/10.1007/s00382-021-06043-w.
  • (26) Li J, Zhao Y*,Tang ZF. 2020. Future projection in summer precipitation over the Yellow River Basin: From the moisture budget perspective. Atmosphere. https://doi.org/10.3390/atmos11121307.
  • (27) Zhao Y, Chen DL, Li J, Chen DD, Chang Y, Li J, Qin R. 2020: Enhancement of the summer extreme precipitation over North China by interactions between moisture convergence and topographic settings. Climate Dynamics. https://doi.org/10.1007/s00382-020-05139-z.
  • (28) Huang WB, Zhao Y*, Sun C, Wang HM, Wang X. 2020: Climate modulation of summer rainstorm activity in eastern China based on the Tibetan Plateau spring heating. Arabian Journal of Geosciences,13(126).https://doi.org/10.1007/s12517-020-5107-4.
  • (29) Zhao Y*, Xu XD, Li J, Huang WB, Kang YZ, Xia Y, Liu D, Sun XY. 2019: The large-scale circulation patterns responsible for extreme precipitation over North China Plain in midsummer.

工作经历

  • 2024.06—至今:中国海洋大学,海洋与大气学院,教授

  • 2024.02—2024.05:哥德堡大学地球科学系,访问学者

  • 2022.09—2023.12:香港科技大学,土木与环境工程系,博士后

  • 2020.08—2022.09:韩国首尔国立大学,地球与环境科学学院,博士后

  • 2019.09—2020.08:加拿大麦吉尔大学,大气与海洋科学系,博士后

  • 2019.04—2019.05:斯德哥尔摩大学,自然地理系,访问学者