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中山大学珠海校区大气科学学院导师教师师资介绍简介-苏琳

本站小编 Free考研考试/2021-05-15



苏琳

中山大学大气科学学院 副教授



电子邮件
sulin8@mail.sysu.edu.cn



副教授,硕士生导师
招收硕士研究生及本科毕设, 欢迎有相关研究兴趣的同学联系。
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研究方向
1. 极端降水天气气候变化及机理
2. 强对流多尺度相互作用
3. 海陆气相互作用
4. 强对流/降水高精度预报
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教育背景
2017年8月,博士,香港科技大学大气环境科学系
2011年7月,硕士,中山大学环境工程系
2006年7月,学士,中山大学大气科学系
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工作经历
2020年8月至今,中山大学大气科学学院“****”副教授
2017年9月 – 2020年7月,香港科技大学博士后研究员
2016年7月 – 2017年1月,美国国家海洋与大气管理局地球系统研究实验室(Boulder)访问****
2011年7月 – 2013年7月,香港科技大学霍英东研究院研究助理
2006年7月 – 2009年7月,广东省惠州市龙门县气象局预报员
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主要论著一览
Su, L.*, J.C.H. Fung, J. Li, W.K. Wong (2021).?Trends in diurnal cycle of summertime rainfall over coastal South China in the past 135 years: characteristics and possible causes. Journal of Geophysical Research: Atmospheres, in press.
Su, L., J. Li, X. Shi, and J. C. H. Fung (2019). Spatiotemporal variation in pre‐summer precipitation over South China from 1979 to 2015 and its relationship with urbanization[J]. Journal of Geophysical Research: Atmospheres, 124(13), 6737-6749.
Su, L.*, and J. C. H. Fung, (2018). Investigating the role of dust in ice nucleation within clouds and further effects on the regional weather system over East Asia–Part 2: modification of the weather system. Atmospheric Chemistry and Physics, 18(15), 11529-11545.
Su, L.*, and J. C. H. Fung. (2018). Investigating the role of dust in ice nucleation within clouds and further effects on the regional weather system over East Asia–Part 1: model development and validation.?Atmospheric Chemistry and Physics,?18(12), 8707.
Su, L., Z. Yuan, J. C. H. Fung, X. J. Deng, A. K. Lau, T. Deng, N. Wang, and C. Q. Yin (2016). Sensitivity of HYSPLIT back-trajectories to the horizontal and vertical resolution of the meteorological input data.?Journal of Tropical Meteorology,?32(6), 864.
Su, L. and J. C. H. Fung (2015). Sensitivities of WRF‐Chem to dust emission schemes and land surface properties in simulating dust cycles during springtime over East Asia.?Journal of Geophysical Research: Atmospheres. DOI: 10.1002/2015JD023446.
Su, L., Z. Yuan, J. C. H. Fung, and A. K. H. Lau (2015). A comparison between HYSPLIT back-trajectories generated from two different datasets. Science of the Total Environment,?506, 527-537. DOI: 10.1016/j.scitotenv.2014.11.072.
Lin, M., L. Su, R. Shaheen, J. C. H. Fung, and M. H. Thiemens (2016). Detection of deep stratospheric intrusions by cosmogenic 35S.?Proceedings of the National Academy of Sciences,?113(40), 11131-11136.
Lin, M., Z. Zhang, L. Su, B. Su, L. Liu, J. Tao, and M. H. Thiemens (2016). Unexpected high 35S concentration revealing strong downward transport of stratospheric air during the monsoon transitional period in East Asia.?Geophysical Research Letters,?43(5), 2315-2322.
Lin, M., Z. Zhang, L. Su, J. Hill-Falkenthal, A. Priyadarshi, Q. Zhang, G. Zhang, S. Kang, C.-Y. Chan and M. H. Thiemens (2015), Resolving the impact of stratosphere-to-troposphere transport (STT) on the sulfur cycle and surface ozone over the Tibetan Plateau using a cosmogenic 35S tracer. Journal of Geophysical Research: Atmospheres. DOI: 10.1002/2015JD023801.
Li, Y.J., B. P.?Lee, L.?Su, J. C. H.?Fung, and C. K.?Chan (2015), Seasonal characteristics of fine particulate matter (PM) based on high resolution time-of-flight aerosol mass spectrometric (HR-ToF-AMS) measurements at the HKUST Supersite in Hong Kong. Atmospheric Chemistry and Physics, 15(1), 37-53.
Chow, K. C., L. Su, J. C. H. Fung and A. K. H. Lau (2014), Numerical modeling of a strong dust event over the South China region. Meteorology and Atmospheric Physics. doi: 10.1007/s00703-014-0338-0.






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