施健讲师(高校)主页
施健

个人信息Personal Information

讲师(高校) 硕士生导师

教师拼音名称:Shi Jian

电子邮箱:

所在单位:大气科学学院

性别:男

职称:讲师(高校)

硕士生导师

  • 基本信息
  • 个人简介
  • 近期主要论著
  • 近期科研项目
  • 姓       名:  施健

    出生年月:  1990年7月

    国       籍:  中国

    性       别:  男

    导       师:  王会军 院士;闵锦忠 教授

    职       称:  讲师

    最高学历:  博士

    所属专业:  气象学

    所属系部:  气候学系

    毕业院校:  南京信息工程大学

    研究方向:  气候动力学

    办公地点:  气象楼319

    邮       箱:  shij@nuist.edu.cn

    主要研究领域: ENSO-季风动力学、海冰-大气相互作用、古气候模拟

  • 教育背景:  

    2008/09–2012/06 南京信息工程大学 大气科学 本科
    2012/09–2017/06 南京信息工程大学 气象学 硕博连读

    工作经历:  

    2017年10月至今 南京信息工程大学 讲师
    2021年12月-2023年11月  Alfred Wegener Institute    博士后

  • 第一作者&通讯作者论文

    • Shi, J., Yan, Q., Jiang, D., Min, J., & Jiang, Y. (2016). Precipitation variation over eastern China and arid central Asia during the past millennium and its possible mechanism: Perspectives from PMIP3 experiments. Journal of Geophysical Research: Atmospheres, 121(20), 11-989.

    • Shi, J., Yan, Q., Wang, H., Jiang, D., Min, J., & Jiang, Y. (2017). Investigating dynamic mechanisms for synchronous variation of East Asian and Australian summer monsoons over the last millennium. Palaeogeography, Palaeoclimatology, Palaeoecology, 480, 70-79.

    • Shi, J., Yan, Q., & Wang, H. (2018). Timescale dependence of the relationship between the East Asian summer monsoon strength and precipitation over eastern China in the last millennium. Climate of the Past, 14(4), 577-591.

    • Shi, J., & Yan, Q. (2019). Evolution of the Asian–African Monsoonal Precipitation over the last 21 kyr and the Associated Dynamic Mechanisms. Journal of Climate, 32(19), 6551-6569.

    • Shi, J., Yan, Q., Yang, Y., & Zhou, F. (2020). Possible modulation of the interannual ENSO‐East Asian winter monsoon relationship by the North American ice sheets during the last 21 ka. Geophysical Research Letters, 47(22), e2020GL089572.

    • Shi, J. (2021). Reexamining the Decadal Variation in the ENSO‐East Asian Winter Monsoon Relationship. Geophysical Research Letters, 48(19), e2021GL094208.

    • Shi, J., Stepanek, C., Sein, D., Streffing, J., & Lohmann, G. (2023). East Asian summer precipitation in AWI‐CM3: Comparison with observations and CMIP6 models. International Journal of Climatology.

    • Shi, J., & Lohmann, G. (2024). Considerable uncertainty of simulated Arctic temperature change in the mid‐Holocene due to initial ocean perturbation. Geophysical Research Letters, 51(4), e2023GL106337.

    • 程曦, 施健*. 全新世东亚夏季风降水穿时性的模拟研究. 第四纪研究,2024, 44(2): 594-605.

    • Shi, J. (2024). Evaluating the East Asian summer precipitation from the perspective of dominant intermodel spread modes and its implication for future projection. International Journal of Climatology, 44(9), 2962-2974.

    • Shi, J., Zhou, F., & Ma, Q. (2024). Simulation of the changing insolation‐precipitation relationship over East Asia during the Holocene. Journal of Geophysical Research: Atmospheres, 129(22), e2024JD041522.

    • 夏禺尧 & 施健*.CMIP6模式对西北太平洋异常反气旋的模拟偏差:主要模式间差异模态及其来源分析.大气科学学报,1-10.https://doi.org/10.13878/j.cnki.dqkxxb.20241217004.

    • Li, S., & Shi, J.* (2025). Assessing the Annual-Scale Insolation–Temperature Relationship over Northern Hemisphere in CMIP6 Models and Its Implication for Orbital-Scale Simulation. Atmosphere, 16(10), 1167.

    • Shi, J., & Zhang, J. (2025). Transient simulation of the spatiotemporal evolution of tropical cyclone genesis potential during the Holocene. Atmospheric and Oceanic Science Letters, 100763.

    • Dou, W., & Shi, J.* (2026). Evolution of temperature extremes during the Holocene: From the modeling perspective. Journal of Geophysical Research: Atmospheres, 131(4), e2025JD044809.


    投稿论文

    • Li, S., Shi, J.*, & Zhou, F. (2026). Resolve the decadal variation in the relationship between ENSO and East Asian winter monsoon.

    • Saadi, B., Zhang, J., & Shi, J.*, (2026). Evaluation of tropical cyclone genesis potential in the Alfred Wegener Institute Climate Model version 3.

    • Liapapa, C., Shi, J.*, et al., (2026). Inter-model diversity among CMIP6 models in simulating summer precipitation over Zambia


  • 近期科研项目:  

    国家自然科学基金(2022-2024年)主持