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个人简介

教育经历 2005年9月—2010年7月:兰州大学,大气科学,博士 2001年9月—2005年6月:兰州大学,大气科学,本科 工作经历 2020年7月—至今:北京师范大学,教授 2015年1月—2020年6月:北京师范大学,副教授 2013年6月—2014年12月:中国科学院大气物理研究所,副研究员 2010年7月—2013年5月:中国科学院大气物理研究所,助理研究员 承担课程 本科生专业选修课:气候与气候变化 研究生学位专业课:论文写作,气候动力学 科研项目 国家自然科学基金-优秀青年科学基金“热带海气相互作用”,2023-2025,项目负责人 国家自然科学基金-面上基金“两类ENSO对Hadley环流与热带海温经向结构协同关系的影响及机理研究”,2020-2023,项目负责人 国家海洋局全球变化与海气相互作用专项“太平洋-印度洋与亚洲季风的相互影响”,2017-2022,骨干成员 国家重点研发计划“全球变暖‘停滞’现象辨识与机理研究”,2017-2021,专题负责人 国家自然科学基金-面上基金“印太暖池区域海温经向结构对我国夏季降水的影响及机理研究”,2015-2018,项目负责人 北京师范大学自主科研基金学科交叉重点项目“热带太平洋暖事件对我国气溶胶浓度的影响”,2016-2018,项目负责人 国家973计划项目“气候变暖背景下我国南方旱涝灾害的变化规律和机理及其影响与对策”,2013-2017,专题负责人 国家自然科学基金-青年科学基金“热带海温经向梯度在Hadley环流变率主导模态的形成、变化中的作用”,2013-2015,项目负责人

研究领域

全球气候变化 热带海气相互作用 气候预测

近期论文

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Li, Y., F. L. Xu, J. Feng*, M.Y. Du, W. J. Song, C. Li, and W. J. Zhao, 2023: Influence of the previous NorthAtlantic Oscillation (NAO) on the spring dust aerosols over North China. Atmos.Chem. Phys., 23, https://doi.org/10.5194/egusphere-2023-52. Wang, S., J. Feng*, X. H. Liu, andX. L. Ji, 2023: Simulation of the long-term variability of the HadleyCirculation in CMIP6 models. Atmos. Res.,287, 106711, https://doi.org/10.1016/j.atmosres.2023.106716. Li, Y., M. Y. Du, J. Feng*, F.L. Xu., and W. J. Song, 2023: Relationships between the Hadley circulation and tropicalsea surface temperature with different meridional structures simulated in CMIP6models. Front. Mar. Sci., 10, https://doi.org/10.3389/fmars.2023.1145509. Ji, X. L., J. Feng*, J. P. Li,X. R. Chen, 2023: Relationship between the hadley circulation and tropical SSTmeridional structures under different thermal conditions in the Indo-pacificwarm pool.Front.Mar. Sci., 9, https://doi.org/10.3389/fmars.2022.1088276 Yu, M. X., J. Feng*, J. P. Li,R. An, 2022: Interdecadal shift of the El Niño’s modulation on the connectionbetween the Hadley circulation and tropical SST. Clim. Dyn., https://doi.org/10.1007/s00382-022-06407-w. Feng, J.*, J. P. Li, R. An, and Y.Q. Wang, 2021: Characteristics of the linkage between the boreal winter Hadleycell and various tropical sea surface temperature meridional structures. Int.J. Climatol., 41, E463-E478. Feng, J., J. L. Zhu, J. P. Li, andH. Liao, 2020: Aerosol concentrations variability over China: two distinctleading modes. Atmos. Chem. Phys., 20, 9883-9893. Feng, J.*, J. P. Li, F.-F. Jin, Z. Y. Liu, and S. Zhao, 2019: Effect of El Niño onthe response ratio of Hadley circulation to different SST meridionalstructures. Clim. Dyn., doi:10.1007/s00382-019-04756-7. Feng, J., J. P. Li, H. Liao, J. L. Zhu, 2019: Simulated coordinated impacts of theprevious autumn North Atlantic Oscillation (NAO) and winter El Niño on winteraerosol concentrations over eastern China. Atmos.Chem. Phys., 19, 10787-10800. Feng, J., J. P. Li, F. Kucharski, Y. Q. Wang, C. Sun, F. Xie, and Y. Yang, 2018: Modulationof the meridional structures of the Indo-Pacific warm pool on the response ofthe Hadley circulation to tropical SST.J. Climate, 31, 8971-8984. Feng, J., J. P. Li, F.-F. Jin, S. Zhao, and J. L. Zhu, 2018: Relationship betweenthe Hadley circulation and different tropical meridional SST structures duringboreal summer. J. Climate, 31,6575-6589. Feng, J., J. P. Li, F. F. Jin, and F. Zheng, 2018: A comparison of the response ofthe Hadley circulation to different tropical SST meridional structures duringthe equinox seasons. J. Geophys. Res.Atmos., 123, 2591-2604, doi:10.1002/2017JD028219. Feng, J., J. P. Li, F. F.Jin, S. Zhao, and F.Xie, 2017: The responses of the Hadleycirculation to different meridional SST structures in the seasonal cycle. J. Geophys. Res. Atmos., 122, 7785-7789. Feng, J., J. P. Li, J. L. Zhu, H. Liao, and Y. Yang, 2017: Simulated contrastinginfluences of two La Niña Modoki events on aerosol concentrations over easternChina. J. Geophys. Res. Atmos., 122, doi:10.1002/2016JD026175. Feng, J., J. P. Li, F. F. Jin, Z. Y. Liu, X. Nan, and Y. P. Guo, 2016: Contrastingresponses of the Hadley circulation to equatorially asymmetric and symmetricmeridional sea surface temperature structures. J. Climate, 29, 8949-8963. Feng, J., J. P. Li, J. L. Zhu, and H. Liao, 2016: Influences of El Niño Modokievent 1994/95 on aerosol concentrations over southern China. J. Geophys. Res. Atmos., 121,doi:10.1002/2015JD023659. Feng, J., J. L. Zhu, and Y. Li, 2016: Influences of El Niño on aerosolconcentrations over eastern China. Atmos.Sci. Lett., 17(7), 422-430. Feng, J., J. P. Li, F. Zheng, F. Xie, and C. Sun, 2016: Contrasting impacts ofdeveloping phases of two types of El Niño on southern China rainfall. J. Meteor. Soc. Jap.,94(4), 359-370. Feng, J., J. P. Li, and F. Xie, 2013: Long-term variation of the principal mode of borealspring Hadley circulation linked to SST over the Indo-Pacific warm pool. J. Climate, 26, 532-544. Feng, J., J. P. Li, and H. L. Xu, 2013: Increased summer rainfall in northwestAustralia linked to southern Indian Ocean climate variability. J.Geophys.Res., 118, doi: 10.1029/2012JD018323. Feng, J., and J. P. Li, 2013: Contrasting impacts of twotypes of ENSO on the borealspring Hadley circulation. J. Climate,26, doi:10.1175/JCLI-D-12-00298.1. Feng, J., and J. Li, 2011: Influence of El Niño Modoki on spring rainfall oversouth China. J. Geophys. Res., 116, D13102, doi:10.1029/2010JD015160. Feng, J., J. Li, and Y. Li, 2010: A monsoon-like southwest Australian circulationand its relation with rainfall in southwest Western Australia. J. Climate, 23, 1334-1353. Feng, J., J. Li, and Y. Li, 2010: Is there a relationship between the SAM andsouthwest Western Australian winter rainfall? J. Climate, 23, 6082-6089.

学术兼职

国际气候学委员会(ICCL)委员(2015—) 国际气象学与大气科学协会(IAMAS)中国委员会委员(2022—) 国际理论物理中心(International Centre forTheoreticalPhysics, ITCP)Junior Associates (2013-2018)

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