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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-陈庭辉
本站小编 Free考研考试/2021-05-15
陈庭辉
中山大学大气科学学院 副教授
电子邮件
chenth25@mail.sysu.edu.cn
陈庭辉,理学博士、副教授、硕士生导师
陈庭辉博士于香港城市大学获得应用物理学(一级荣誉)学士学位和能源及环境博士学位,其后担任博士后及研究员,现任职中山大学大气科学学院“****”人才引进副教授,硕士生导师。
陈博士多年从事热带气旋相关研究工作,特别在热带气旋尺度大小、移动路径和降水等方面做了大量工作,其研究成果不断在各知名学术期刊上发表。
陈博士所参与的天气与模式团队主力围绕研究华南、南海和粤港澳大湾区的中小尺度灾害天气、辐射传输、物理过程参数化、海气耦合、资料同化和集合预报等前沿科学问题,已自主创新研发集合变换敏感性方法、大气海洋海浪完全耦合、辐射传输模型、延伸期预报和物理过程参数化优选技术等关键技术。
另外,陈博士所参与的台风研究团队拥有自主研发的台风预报模型和种类齐全的台风数据库,团队多年来,在南海热带气旋及其海气相互作用等方面进行了较为系统深入的研究。
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Kelvin T. F. CHAN, PhD, Associate Professor, Master Student Supervisor
Dr. Kelvin T. F. CHAN obtained the BSc in Applied Physics (First Class Honours) and PhD in Energy and Environment at the City University of Hong Kong. He then worked there as a Postdoctoral Fellow and Research Fellow. He is currently an Associate Professor at the Sun Yat-sen University (SYSU) via the "SYSU 100 Top Talents Program", a Master student Supervisor.
Dr. CHAN has been working on tropical cyclone related researches for many years, especially the size, track and precipitation of tropical cyclones. His research achievements keep being published in many high impact academic journals.
The Weather and Model team that Dr. CHAN is participating focuses on researching the frontier scientific issues of mesoscale disaster weather, radiation transmission, physical process parameterization, ocean-atmosphere coupling, data assimilation, and ensemble forecasting in the South China, South China Sea and the Guangdong-Hong Kong-Macau Bay area. The team has innovatively developed the ensemble transformation sensitivity method, fully-coupled (atmosphere-ocean-wave) model, radiation transmission model, extended forecast, and physical process parameterization optimization techniques.
In addition, The Typhoon Research team that Dr. CHAN is participating has independently developed typhoon prediction models and a series of typhoon database. The team has carried out more systematic and in-depth research on tropical cyclones in the South China Sea and their air-sea interaction.
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联络方式(Contact)
通讯地址:中国广东省珠海市香洲区中山大学海琴2号A232室(邮政编码:519082)
电子邮箱:chenth25@mail.sysu.edu.cn
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Corresponding Address: A232, 2/F, Haiqin 2, Sun Yat-sen University, Xiangzhou, Zhuhai, Guangdong, China (Zip Code: 519082)
Email: chenth25@mail.sysu.edu.cn
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研究领域(Research Area)
热带气旋、热带气象学、极端天气、气候变化、数值模拟
Tropical cyclone, tropical meteorology, extreme weather, climate change, numerical modeling
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人才招聘(Job Openings)
职位:特聘研究员 / 特聘副研究员 / 博士后 / 研究助理
专业:热带气旋、热带气象学、极端天气、气候变化、数值模拟
职责:聘任者将参与热带气旋、热带气象学,极端天气,气候变化和数值天气模拟相关研究。
条件:持有相关科学或工程领域学位。研究科学家和博士后研究员:博士学位;研究助理:学士或硕士学位。具有数值模拟经验的候选人将会优先考虑。
薪酬和服务条件:所提供服务的薪酬和条件将极具竞争力,与资质和经验相称。
申请:欢迎各国内外人士申请,直到所有职位被填补。应聘者请透过电邮发送一封附有研究计画的求职信和完整的简历给陈博士。
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Positions: Research Fellow Type I, Research Fellow Type II, Postdoctoral Fellow and Research Assistant
Professions: Tropical cyclone, tropical meteorology, extreme weather, climate change, numerical modeling
Duties: The appointee will conduct researches in tropical cyclone, tropical meteorology, extreme weather, climate change and numerical weather modeling.
Requirements: Degree holder in relevant science or engineering fields: PhD degree for Research Scientist and Postdoctoral Fellow; Bachelor's or Master's degree for Research Assistant. Candidates with experience in numerical modeling are preferred.
Salary and Conditions of Service: Salary and conditions of service offered will be highly competitive, commensurate with qualifications and experience.
Application: Welcome people from home or abroad to apply. Applications will be accepted until all the positions are filled. To apply, please send a cover letter with research statement and a full CV to Dr. CHAN by email.
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荣誉(Honors)
Outstanding Academic Papers' Award × 2 (2 papers), CityU, Hong Kong
Research Tuition Scholarships × 4 (4 years), CityU, Hong Kong
Outstanding Academic Performance Award for Research Degree Students, CityU, Hong Kong
The CSE Co-operative Education Scheme Awards, CityU, Hong Kong
The Award of Excellence of the Whole Person Development Award Scheme, CityU, Hong Kong
Wei Lun Foundation Scholarships × 2 (2 years), Hong Kong
AIA Foundation Scholarship, Hong Kong
AP Education Fund Scholarship(s) × 2 (2 years), CityU, Hong Kong
CMA and Donors Scholarships, Hong Kong
Li Po Chun Charitable Trust Fund Scholarships (for undergraduate students), Hong Kong
Surface Mount Technology (Holdings) Ltd Scholarships, Hong Kong
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论著出版(Publications)
Ito, K.*, C.-C. Wu, K. T. F. Chan, R. Toumi, and C. Davis, 2020: Recent progress in the fundamental understanding of tropical cyclone motion. Journal of the Meteorological Society of Japan, 98, 5–17, doi:10.2151/jmsj.2020-001.
Chan, K. T. F.*, 2019: Are global tropical cyclones moving slower in a warming climate? Environmental Research Letters, 14, 104015, doi:10.1088/1748-9326/ab4031.
Pun, I. F.*, J. C. L. Chan, I. I. Lin, K. T. F. Chan, J. F. Price, D. S. Ko, C. C. Lien, Y. L. Wu, and H. C. Huang, 2019: Rapid intensification of Typhoon Hato (2017) over shallow water. Sustainability, 11, 3709, doi:10.3390/su**.
Chan, K. T. F.*, J. C. L. Chan, and W. K. Wong, 2019: Rainfall asymmetries of landfalling tropical cyclones along the South China coast. Meteorological Applications, 26, 213–220, doi:10.1002/met.1754.
Chan, K. T. F.*, D. Wang, Y. Zhang, W. Wanawong, M. He, and X. Yu, 2019: Does strong vertical wind shear certainly lead to weakening of tropical cyclone? Environmental Research Communications, 1, 015002, doi:10.1088/2515-7620/aaecac.
Chan, K. T. F.*, and J. C. L. Chan, 2018: The outer-core wind structure of tropical cyclones. Journal of the Meteorological Society of Japan, 96, 297–315, doi:10.2151/jmsj.2018-042.
Mok, D. K. H.*, J. C. L. Chan, and K. T. F. Chan, 2018: A 31-year climatology of tropical cyclone size from the NCEP Climate Forecast System Reanalysis. International Journal of Climatology, 38, e796–e806, doi:10.1002/joc.5407.
Chan, K. T. F., and J. C. L. Chan*, 2016: Tropical cyclone recurvature: An intrinsic property? Geophysical Research Letters, 43, 8769–8774, doi:10.1002/2016GL070352.
Chan, K. T. F.*, and J. C. L. Chan, 2016: Sensitivity of the simulation of tropical cyclone size to microphysics schemes. Advances in Atmospheric Sciences, 33, 1024–1035, doi:10.1007/s00376-016-5183-2.
Chan, K. T. F.*, and J. C. L. Chan, 2015: Global climatology of tropical cyclone size as inferred from QuikSCAT data. International Journal of Climatology, 35, 4843–4848, doi:10.1002/joc.4307.
Chan, K. T. F.*, and J. C. L. Chan, 2015: Impacts of vortex intensity and outer winds on tropical cyclone size. Quarterly Journal of the Royal Meteorological Society, 141, 525–537, doi:10.1002/qj.2374.
Chan, K. T. F.*, and J. C. L. Chan, 2014: Impacts of initial vortex size and planetary vorticity on tropical cyclone size. Quarterly Journal of the Royal Meteorological Society, 140, 2235–2248, doi:10.1002/qj.2292.
Chan, K. T. F., and J. C. L. Chan*, 2013: Angular momentum transports and synoptic flow patterns associated with tropical cyclone size change. Monthly Weather Review, 141, 3985–4007, doi:10.1175/MWR-D-12-00204.1.
Chan, K. T. F., and J. C. L. Chan*, 2012: Size and strength of tropical cyclones as inferred from QuikSCAT data. Monthly Weather Review, 140, 811–824, doi:10.1175/MWR-D-10-05062.1.
Chan, S. T.*, T. F. Chan, W. K. Wong. 2010: An intercomparison of WRF-ARW and JMA-NHM performance in prediction of tropical cyclones over the South China Sea in 2008. The 29th Conference on Hurricanes and Tropical Meteorology, American Meteorological Society, Tucson, Arizona, USA.
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(最近更新:2020年9月)
(Latest update: September 2020)
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