周文

周文

周文,女,德国洪堡学者,香港天文台科学顾问,现任复旦大学特聘教授、博士生导师。主要研究台风和季风的变化规律及其可预测性研究,气候变异以及极端天气气候的机理研究,主持过多项国内、国际合作科研项目。[0]1990年,学士学位,大气科学,中山大学大气科学系

周文,女,德国洪堡学者,香港天文台科学顾问,现任复旦大学特聘教授、博士生导师。主要研究台风和季风的变化规律及其可预测性研究,气候变异以及极端天气气候的机理研究,主持过多项国内、国际合作科研项目。[1]

教育经历

1990年,学士学位大气科学,中山大学大气科学系

1996年,硕士学位,大气科学,中山大学大气科学系

2004年,博士学位,大气科学,香港城市大学物理暨材料科学系(现改为物理系)[2]

工作经历

1990年-1993年,预报员,广东中山市气象局

1996年-2001年,助教、讲师,中山大学大气科学系

2004年-2006年,博士后,中国科学院大气物理研究所LASG

2006年-2021年,讲师、助理教授、副教授、教授,香港城市大学

2020年-2021年,副主任、主任,佳达亚太气候研究中心

2022年-至今,特聘教授,复旦大学[2]

教学经历

Climate Change and Extreme Weather,类别(本科生),授课单位,香港城市大学

Data analysis in Envir Application,类别(本科生/研究生),授课单位,香港城市大学

Air Pollution,类别(本科生),授课单位,香港城市大学

Atmospheric Science: An introductory Survey,类别(本科生),授课单位,香港城市大学[2]

社会任职

《Advances in Atmospheric Sciences》,编委

《Atmospheric & Oceanic Science Letters》,编委

《Bulletin of HK Met. Soc》,编委

香港天文台,科学顾问[2]

科研综述

长期从事东亚季风活动、极端高温事件、旱涝灾害和水汽输送,以及台风的研究,取得了一系列创新性的研究成果,这些成果不仅有重要科学意义,也有助于提高我国短期气候预测水平,并为国家制定抗震减灾政策提供了科学的依据。在季风活动和我国极端天气研究方面,不仅揭示了夏季风在南海爆发所呈现的多尺度变化特征,以及对可预测性的影响;同时还研究了我国极端高温天气和寒潮的发生特征和成因,针对严重影响我国的旱涝问题,研究了东亚地区的水汽输送变化规律,为年际和年代际气候预测提供了科学依据。还研究揭示了热带季节内振荡和ENSO对西北太平洋台风活动的调控作用和相关机理。

周文博士主持过多项国内、国际合作科研项目,如多项国家自然科学基金面上课题、香港GRF基金、澳门政府计划基金、德国/香港联合基金和法国/香港联合基金等。已出版发表135余篇SCI论文,SCI总引用高达2443余次, H 研究指数27。[3]

研究方向

气候变化与气候变率,气候预测,季风动力学,海气相互作用,热带气旋[2]

科研项目

主持的科学项目

“Observed trends and future changes in the intensity, frequency, and duration of very hot weather in Hong Kong” RGC General Research Fund 11306417 (GRF) (314,900.00HKD),2018-2020“Biases of North Atlantic Storm Track and Ural Blocking Influencing on East Asian Winter Monsoon Projection” RGC General Research Fund 11335316 (GRF) (540,824.00HKD),2017-2019“ENSO Amplification on summer heat waves in South China” National Nature Science foundation of China Grant 41675062 (710,000.00RMB),2017-2020“Teleconnections  and  Future  Changes in  the East Asian Winter Monsoon  under Arctic Amplification” RGC General Research Fund (GRF) 11305715 (591,152HKD),2016-2018“Relationship between moisture budget over East Asia-Western North Pacific and two types of NSO cycle and its decadal variation,” National Nature Science foundation of China Grant  41375096 (900,000RMB), 2014-2017“Detection of TC induced rainfall over South China,” CityU Strategic Research Grant 7004164 (100,000HKD), 2014/9-2015/8“Response of East Asian Monsoon and Climate to Tropical Anomalies in a GCM with Nudging,” France/HK Joint Research Scheme (FR/HKJRS) 9052010 (61,200HKD), 2013-2014“Study on Dynamic Process of Extreme Cold Spells in South China,” CityU Strategic Research Grant 7004004 (100,000HKD), 2013/10-2014/9“我国南方持续性干旱年代际变化与水汽输送异常”深圳市协同创新科技计划——国家和省计划配套项目(288,000RMB), 2014-2015“Water vapor transport anomalies associated with ENSO and their impacts on water resources in the Pearl River Basin,” CityU Strategic Research Grant 7002780 (180,000HKD), 2012/5-2014/4“Understanding hot spells and heat waves in South China in recent decades,” CityU Strategic Research Grant 7002917 (69,333HKD), 2012/12-2013/09“The decadal variability of persistent drought over South China and its association with water vapor transport anomalies,” matching for PRC Grants (MFPRC) 9680018 (157,440HKD), 2012/1-2014/12“Decadal variability of persistent drought in South China and its association with water vapor transport anomalies,” National Nature Science foundation of China Grant 41175079 (640,000RMB), 2012/1-2015/12“Downscaling projection of Macao Climate Extreme,” Macao government project 9231048 (900,000HKD), 2012/9-2014/8“Persistent drought in China after 2000,” CityU Strategic Research Grant 7002717 (174,000HKD) 2011/5-2013/4“Characteristics of blocking events over Siberia for the present and future climate conditions, and the implications for the regional climate in South China,” RGC General Research Fund (GRF) 104410 (9041548) (582,540HKD) “Analysis of the characteristics of blocking events over Siberia for present and future climate conditions and its implication for the regional climate over Southeast Asia,” Germany/HK joint Research Scheme (Ger/HKJRS) 9053005 (59,200HKD), 2010/1-2011/12“A study of climatological drought over South China,” CityU Strategic Research Grant 7002505 (180,000HKD), 2009/10-2011/9“The impacts of South China monsoon climate variability and El Niño on Hong Kong air quality” HK government ECF Grant 9211008 (249,880HKD), 2008/4-2010/4“Study on the sea level changes in the northern South China Sea under the global warming scenario,” CityU Strategic Research Grant 7002329 (145,000HKD), 2008/4-2009/9“The impact of NAO and ENSO-related large-scale circulation on East Asian winter monsoon,” CityU Strategic Research Grant 7002231 (180,000HKD), 2007/10-2009/9“The impact of Pacific interdecadal signal on the winter monsoon-ENSO relationship,” Joint Project in the Knowledge Innovation Program of the Chinese Academy of Sciences (IAP 07314) (50,000RMB), 2007/9-2009/8“Climatology of winter monsoon surges over South China,” CityU Start-up Grant 7200098 (280,000HKD), 2007/5-2008/3“Linkage between wintertime blocking episodes over Ural Mountains and cold surge over South China,” CityU Strategic Research Grant 7002136 (180,000HKD), 2007/4-2009/3“The interdecadal relationship between monsoon rainfall and ENSO,” Project of Key Laboratories of Tropical Marine Environmental Dynamics, South China Sea Institute of Oceanology, Chinese Academy of Sciences Grant LED0601 (20,000RMB), 2007/1-2008/12“The Pacific interdecadal pathway and its linkage with PDO evolution,” Project of State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics, Chinese Academy of Sciences Grant LASG2712 (20,000RMB), 2007/1-2008/12“Interdecadal variability of East Asian monsoon and ENSO,” National Nature Science foundation of China Grant 40675051 (360,000RMB), 2007/01-2009/12“Possible mechanism for the interdecadal variability of the East Asian monsoon,” Post-doctoral Working Foundation, Chinese Academy of Sciences Grant IAPV306 (20,000RMB), 2005/1-2006/12

参与研究项目

“Drought hazards in Guangdong province: Spatio-temporal patterns, climatic drivers and societal responses,” RGC General Research Fund (GRF) 441313, 2014/1-2015/12“Variability of the water and energy cycles and their impact on the extreme climate over China under the global warming background,” 973 Basic Research Program Grant 2009CB421400, 2008/9-2013/8“The response of South China Sea and its impact on the weather and climate over South China in the summer season,” Joint National Natural Science Foundation of China Project U0733002, 2008/1-2011/12“Ocean-atmosphere interaction over the joining area of Asia and Indian-Pacific Ocean (AIPO) and its impact on the short-term climate variation in China,” 973 Basic Research Program Grant 2006CB403600, 2006/9-2011/8[3]

著作章节

Zheng C.W., Z.N. Xiao, W. Zhou, X.B. Chen, and X.Chen, 2017: The Maritime Silk Road- A Great Peaceful Way Forward. In Press. Wang DX., X Wang, W. Zhou, C. Y. Li, 2014: Comparisons of Two Types of El Niño Impacts on TC Genesis over the South China Sea. January 2014. DOI: 10.1007/978-3-642-40695-9_17. In book: Typhoon Impact and Crisis Management, pp.351-359[3]

发表论文

部分论文如下:

Liu Z.C, Zhou W*, 2021: The 2019 autumn hot drought over the middle-lower reaches of the Yangtze River in China: Early propagation, process evolution, and concurrence, Journal: Journal of Geophysical Research: Atmosphere, 126(15), e 2020JD033742Cheung KY, Leung Y T, Zhou W*, 2021: Position, Magnitude, and Size of Warm-Pool El Niño: Variability, Seasonal Predictability, and Climate Impacts, Journal of Geophysical Research: Atmosphere, 126(14), e2021JD034917.Jian, Y.,Leung, M.Y.T., Zhou W*,Jian MQ, Yang, S.,Lin, X. 2021:Interdecadal shift of the relationship between ENSO and winter synoptic temperature variability over the asian-pacific-american region in the 1980s. Journal of Climate, 2021, 34, 5321–5335

Zhang Y, Zhou W*,Li, T. 2021: Impact of the Indian ocean dipole on evolution of the subsequent ENSO: Relative roles of dynamic and thermodynamic processes. Journal of Climate, 34, 3591–3607Leung, Y. T., Zhou W*, Chan P W, Lee SM, and Tong HW, 2020: Remote tropical western Indian Ocean forcing on long-term changes in June precipitation in South China and the Indochina peninsula. J. Climate. Doi: 10.1175/JCLI-D-19-0626.1, 33, 7553-7566.Akinsanola, A. A.,  Zhou W*, Zhou T J, and Noel Keenlyside, 2020: Amplification of synoptic to annual variability of West African summer monsoonrainfall under global warming. npj Climate and Atmospheric Science, 3, 21. DOI: 10.1038/s41612-020-0125-1.Akinsanola, A. A., and Zhou W*, 2019: Dynamic and thermodynamic factors controlling increasing summer monsoon rainfall over the West African Sahel. Climate Dynamics, 52, 4501-4514. doi:10.1007/s00382-018-4394-x.

Zhang, Y., Zhou W*, Eric C.H. Chow, and Y. T. Leung, 2019: Delayed impacts of the IOD: cross-seasonal relationships between the IOD, Tibetan Plateau snow, and summer precipitation over the Yangtze–Huaihe River region. Climate Dynamics, 53, 4077-4093

Leung, Y. T., and Zhou W*, 2018: Circumglobal teleconnection and eddy control of variation in summer precipitation over Northwest China. Climate Dynamics, 51, 1351-1362.  

Leung, Y. T., S. Qiu, and Zhou W*, 2018: Modulations of rising motion and moisture on summer precipitation over the middle and lower reaches of the Yangtze River region. Climate Dynamics. 51, 4259-4269.  [2]Leung Y T, S. Qiu, and W Zhou*,2018: Modulations of rising motion and moisture on summer precipitation over the Yangtze River region. Climate Dynamics (Accepted)Leung YT. W Zhou*, CM. Shun, P W Chan, 2018: Large-scale circulation control of the occurrence of low-level turbulence at HKIA. AAS (In press)Wang L., G. Huang, W. Chen, W. Zhou and W.Q. Wang, 2018: Wet-to-dry shift over Southwest China in 1994 tied to the warming of tropical warm pool. Clim. Dyn., doi:10.1007/s00382-018-4068-8 Qian, C., W. Zhou, X.-Q. Yang and J. C. L. Chan, 2018: Statistical prediction of non-Gaussian climate extremes in urban areas based on the first-order difference method, Int. J. Climatol. DOI:10.1002/joc.5464. Cheung H.N., Noel Keenleyside, N-E Omrani, W Zhou, 2017: Remarkable link between projected uncertainties of Arctic sea ice decline and winter Eurasian climate. AAS, 35, 38-51.Abolude Akintayo T., W. Zhou*, Y T Leung, 2017: Regional impact Assessment of monsoon variability on wind power availability and optimization in Asia. Atmosphere, 8,219. doi:10.3390/atmos8110219Leung Y T,W Zhou*, 2017: Circumglobal teleconnection and eddy control of variation in summer precipitation over Northwest China. Climate Dynamics. doi 10.1007/s00382-017-3958-5Zhou W*, 2017: The impact of Arctic Amplification on East Asian winter climate. Atmospheric and Oceanic Science Letters. doi: 10.1080/16742834.2017.1350093Zhang, Z.X., W. Zhou, M. Wenig, and L.Yang,2017: Impact of long-range desert dust transport on hydrometeor formation over coastal East Asia. Adv. Atmos. Sci., 34, 101-105.Leung Y. T., H. N. Cheung, and W. Zhou*, 2017: Meridional Displacement of the East Asian Trough and Its Response to ENSO Forcing. Climate Dynamics. 48, 335-352. doi: 10.1007/s00382-016-3077-8 Wang W. W., W. Zhou*, 2017: Statistical modeling and trend detection of extreme sea level records in the Pearl River Estuary, Adv. Atmos. Sci., 34,383-396.Li C.Y., W. Zhou*, C. M. Shun, T. C. Lee, 2017: Change in destructiveness of landfalling tropical cyclones over China in recent decades. J. Climate. 30, 3367-3379.  Li X.Z., Y.Q. Chen and W. Zhou, 2017: Response of winter moisture circulation to the India-Burma Trough and its modulation by the South Asian waveguide. J. Climate. 30, 1197-1210.Lin X B, ZP Wen, W. Zhou, R. G. Wu, 2017: Effects of Tropical Cyclone Activity on the Boundary Moisture Budget over Eastern China Monsoon Region. Adv. Atmos. Sci., 34,700-712.Xiao F. A., L.L. Zeng, Qin‑Yan Liu, W. Zhou and D.X. Wang, 2017: Extreme subsurface warm events in the South China Sea during 1998/99 and 2006/07: observations and mechanisms. Climate Dynamics. doi 10.1007/s00382-017-3588-y (In press)Li G., J. Chen, X. Wang, X. Luo, D. Yang, W. Zhou, Y. Tan, H. Yan, 2017: Remote impact of North Atlantic sea surface temperature on rainfall in southwestern China during boreal spring. Climate Dynamics. doi 10.1007/s00382-017-3625-x (In press)Chen Jie Peng, X Wang, W Zhou, ZP Wen, 2017: Interdecadal change in the summer SST-precipitation relationship around the late 1990s over the South China Sea. Climate Dynamics. doi 10.1007/s00382-017-4009-y (In press)Cheng. H. N., W. Zhou*, Y. T. Leung, CM. Shun, S.M. lee, H. W. Tong, 2016: A Strong Phase Reversal of the Arctic Oscillation in Midwinter 2015/16: Role of the Stratospheric Polar Vortex and Tropospheric Blocking. J. Geophys. Res. Atmos. DOI: 10.1002/2016JD025288.Zhou W.*, C. Y. Li and C. H. Chow, 2016: Intraseasonal variation of visibility in Hong Kong, Advances in Atmospheric Sciences. 34, 26-38.Leung Y. T., and W. Zhou*, 2016: Direct and indirect ENSO modulation of winter temperature over the Asian–Pacific–American region, Scientific Reports. DOI: 10.1038/srep36356Zhang, Z., W. Zhou, M. Wenig, L.G. Yang, 2016: Impact of long-range desert dust transport on coastal East Asia: analysis of urban dust concentration and wet deposition with model simulation.  Air Qual Atmos Health. 10, 325-337. doi:10.1007/s11869-016-0440-1.Feng T. X.Q. Yang, W. Zhou, R. H. Huang, L. Wu and D. J. Yang, 2016: Synoptic-scale waves in sheared background flow over the western North Pacific. J. Atmos. Sci., 73, 4583-4603.Cheung H.N., and W. Zhou*, 2016: Simple Metrics for Representing East Asian Winter Monsoon Variability: Ural Blocking and Western Pacific Teleconnection Pattern. Advances in Atmospheric Sciences, 33, 695-705.Wang W.W., W. Zhou*, Eward Y.Y. Ng, 2016: Urban heat islands in Hong Kong: Statistical modeling and trend detection. Natural Hazards, 83, 885-907.Li, X. Z., W. Zhou*, and Y. Q. Chen, 2016: Detecting the origins of moisture over Southeast China: Seasonal variation and extreme rainfall. Adv. Atmos. Sci. 33, 319-329.Wang, L., W. Chen, W. Zhou, and G. Huang, 2016: Understanding and detecting Super- Extreme Droughts in Southwest China through an integrated approach and index, Quarterly Journal of the Royal Meteorological Society, 142, 529-535.  doi: 10.1002/pi.2593. Li, X. Z., and W. Zhou*, 2016: Modulation of the Interannual Variation of the India-Burma Trough on the Winter Moisture Supply over Southwest China. Climate Dynamics, 46, 147-158. doi:10.1007/s00382-015-2575-4.Leung, Y. T., and W. Zhou*, 2016: Eddy contributions at multiple timescales to the evolution of persistent anomalous East Asian trough. Climate Dynamics. 46, 2287-2303. doi 10.1007/s00382-015-2702-2Wang, W. W., W. Zhou*, X. Z. Li, X. Wang, and D. X. Wang, 2016: Synoptic-scale characteristics and atmospheric controls of summer heat waves in China.  Climate Dynamics. 46, 2923-2941. Doi: 10.1007/s00382-015-2741-8Wang, L., G. Huang, W. Zhou, and W Chen, 2016: Historical change and future scenarios of sea level rise in Macau and the adjacent waters. Adv. Atmos. Sci., 33, 462-475. Doi: 10.1007/s00376-015-5047-1. Iman Rousta, Mohsen Soltani, W Zhou, H. N. Cheung, 2016: Analysis of Extreme Precipitation Events over Central Plateau of Iran. American Journal of Climate Change. 05, 297-313.15. Li, C. Y., and W. Zhou*, 2015: Multiscale control of summertime persistent heavy precipitation events over South China in association with synoptic, intraseasonal, and low-frequency background. Climate Dynamics, 45, 1043-1057. doi:10.1007/s00382-014-2347-6  Leung, Y. T., H. N. Cheung, and W. Zhou*, 2015: Energetics and dynamics associated with two typical mobile trough pathways over East Asia in boreal winter. Climate Dynamics, 44, 1611-1626. doi:10.1007/s00382-014-2355-6  Wang, L., W. Chen, W. Zhou, and G. Huang, 2015: Teleconnected influence of tropical Northwest Pacific Sea surface temperature on interannual variability of autumn precipitation in Southwest China. Climate Dynamics, 45, 2527-2539. doi:10.1007/s00382-015-2490-8 .Qian, C., W. Zhou, S. K. Fong, and K. C. Leong, 2015: Two approaches for statistical prediction of non-Gaussian climate extremes: A case study of Macao hot extremes during 1912-2012. Journal of Climate, 28,623-636. doi:10.1175/JCLI-D-14-00159.1  Ye K. H., Chi-Yung Tam, Wen Zhou, and Soo-Jin Sohn, 2015: Seasonal prediction of June rainfall over South China: Model assessment and statistical downscaling. Adv. Atmos. Sci., 32, 680-689. doi:10.1007/s00376-014-4047-x.Leung, Y. T., and W. Zhou*, 2015: Vertical structure, physical properties and energy exchange of the East Asian trough in boreal winter. Climate Dynamics, 45, 1635-1656. doi:10.1007/s00382-014-2419-7.Leung, Y. T., and W. Zhou*, 2015: Variation of circulation and East Asian climate associated with anomalous strength and displacement of the East Asian trough. Climate Dynamics, 45, 2713-2732. doi:10.1007/s00382-015-2504-6.  Li, C. Y., and W. Zhou*, 2015: Interdecadal changes in summertime tropical cyclone precipitation over Southeast China during 1960-2009. Journal of Climate, 28, 1494-1509. doi:10.1175/JCLI-D-14-00246.1Cheung, H. N., W. Zhou*, S. M. Lee, and H. W. Tong, 2015: Interannual and interdecadal variability of the number of cold days in Hong Kong and their relationship with large-scale circulation. Mon. Wea. Rev., 143, 1438-1454. doi 10.1175/MWR-D-14-00335.1[3]

获得荣誉

2020年度入选“中国科学院海外评审专家。”[2]

2017,香港城市大学优秀博士导师奖。

2017,广州市科技一等奖

2017,深圳市科学技术奖。

2011,深圳虚拟大学科学技术奖。

2008,德国洪堡学者。

2006,王宽诚博士后研究奖。[3]

参考资料 3

  1. 周文已任复旦特聘教授,曾长期在香港城市大学工作 — 今日头条 澎湃新闻
  2. 周文(Wen Zhou) — 复旦大学大气与海洋科学
  3. 周文 — 暨南大学环境与气候研究院
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