个人科研简历
一、姓名
范可
二、研究方向
气候动力学和气候预测研究
三、教育及工作经历
1988年09月—1992年07月,云南大学,学士
1995年09月—1998年07月,南京气象学院,硕士
2002年09月—2005年07月,中国科学院大气物理研究所,博士
1992年08月—1995年08月,云南省气象局,助理工程师
1998年08月—2006年11月,云南大学,副教授
2006年12月—2009年12月,中国科学院大气物理研究所,副研究员
2010年01月—2021年01月,中国科学院大气物理研究所,研究员
2021年02月— ,中山大学,教授
四、近五年(2021-2025)主持科研项目
1)国家自然科学基金委重点项目,考虑季节内变化的我国北方冬季气候统计-动力预测研究(41730964),2018.01-2022.12,312万
2)国家重点研发计划政府间国际科技创新合作专项,新北极气候系统变化机理和气候预测研究(2022YFE0106800),2022.06-2026.05,452万
3)国家自然科学基金委重点项目,我国西南地区重要持续性旱涝事件的气候演变和物理机制及预测研究(42230603),2023.01-2027.12,271万
五、近五年(2021-2025)发表学术论文列表
*表示通讯作者
1)Gao, Y. P.,Fan, K.*, Xu, Z. Q.2025:An interannual dipole mode of midsummer persistent extreme high-temperature days between South China and Southwest China: effects of Indo-Pacific sea surface temperature.Climate Dynamics, 63, 34.
2)Ji, L. Q.,Fan, K.*, Tian, Y. Q.2025:Nonstationary linkage between summer warmth index and NDVI at high latitudes in Eurasia.Environmental Research Letters, 20, 014034.
3)Jiang, J., He, S. P.,Fan, K.*2025:Recent impact of reduced arctic sea-ice on the winter North Atlantic jet stream and its quantitative contributions compared to pre-industrial level.Atmospheric Research, 313, 107778.
4)Jiang, J.,Fan K.*, He S. P.2025:Recent strengthened influence of Bering Sea ice on the extreme cold days in Siberia.Geophysical Research Letters, 52, e2025GL116729.
5)Li, G. Y., Yang, S., Zhang, T. T., Zhong, W. X.,Fan, K., Ren, Q. L.2025:Two distinct interannual modes of the North Pacific Oscillation: Role of ocean-atmosphere coupling and transient eddies.Climate Dynamics, 63, 10.
6)Tian, Y. Q.,Fan K.*, Yang, H. Q.,Xu, Z. Q.2025:Principal modes of summer NDVI in eastern Siberia and its climate prediction schemes.Atmospheric and Oceanic Science Letters, 18, 100611.
7)Wang D, Lian T,Fan K.,Liu, T, Hu R. K., Fan, L. J., Song, X. S.2025:Cause and Impact of the Record-Breaking Equatorial Pacific Easterly Anomalies in 2022.Journal of Climate, 38, 5825-5840.
8)Wang, J,Fan K.*,Xu Z. Q.2025:In-phase variations of winter and spring dryness/wetness over Southwest China: impact of winter snow cover in the Tibetan Plateau.Climate Dynamics63, 189.
9)Wang J,Fan K.*.2025:Month-to-month evolution of persistent extreme drought over Southwest China in January–May 2023: Roles of Eurasian snow cover and sea surface temperature anomalies in the Indian Ocean.Journal of Geophysical Research: Atmospheres, 130, e2025JD044611.
10)Shan Q,Fan, K.*2025:Stratospheric Polar Vortex Prolongs the Persistence of Northern Annular Mode During Winter: The Role of Refractive Index.Journal of Geophysical Research: Atmospheres, 130.
11)Xie Y. F.,Fan, K.*, Yang H Q., Fan Y., He, S. P.2025:An effective deep-learning prediction of Arctic sea-ice concentration based on the U-Net model.Atmospheric and Oceanic Science Letters, 100691.
12)Xu, Y. F.,Fan, K.*, He, S. P.2025:Interdecadal opposite variation of December–January blocking days between the eastern North Atlantic and Ural region around 2008.Atmospheric Research, 314, 107805.
13)Zhang, H.,Fan, K.*2025:Subseasonal predictability of the extreme autumn rainfall event in West China in 2021.Atmospheric Research, 315, 107829.
14)Zhang, Q. P.,Fan, K.*, Xu, Z. Q.2025:Strengthened Linkage Between July and August Beaufort Sea Ice and August Precipitation in Southern Greenland Since 2008. International Journal of Climatology,45,e70060.
15)Zhu,J.J.,Fan,K., He,S.P.,Zhang, T. T., Deng, Y., Yang, S. Chen, D. L., Deng, K. Q., Yu, W., Tian, B. Q.2025:Quantitative attribution of 2016 extreme arctic warmth: comparison between late winter and early spring.Environmental Research Letters, 20.
16)Deng,K.Q., Yang,S.,Fan,K.,Wang, Z. Q., Yu, W., Huang, Z. Y., Xia, M., Chen, D. L.,Lian, T., Tian, B. Q.2024:A dry-wet teleconnection between southwestern and northeastern China in winter and early spring.Climate Dynamics, 62,6643-6663.
17)He, S. P., Drange, H., Furevik, T., Wang, H. J.,Fan, K., Graff, L. S., Orsolini, Y. J., 2024: Relative impacts of sea ice loss and atmospheric internal variability on winter Arctic to East Asian surface air temperature based on large-ensemble simulations with NorESM2.Advances in Atmospheric Sciences, 41, 1511-1526.
18)Ji, L. Q.,Fan, K.*2024:Regime shift of the interannual linkage between NDVI in the Arctic vegetation biome and Arctic sea ice concentration.Atmospheric Research, 299, 107184.
19)Li, H. S.,Fan, K.*2024:The out-of-phase variation of surface air temperature anomalies over northern Central Asia between January and February: The role of intraseasonal variations in tropical convection.International Journal of Climatology, 44, 2575-2591.
20)Liu, F., Zhou,J. H.,Wang, B., Leung,J.C., Chen, D. L., Lin, Z. D., Kang, I. S., Chao, Q. C., Ke, Z. J,Fan, K., Liu, B. Q.,Huang, G., Hsu, P. C., Dong, W. J.2024:Opportunities andbarriers forskillfulsubseasonalprediction of East Asiansummerprecipitation.Bulletin of the American Meteorological Society,105,E2216-E2230.
21)Shan, Q.,Fan, K.*, Liu, J. P.2024:The stepwise decrease of 4+ year ice extent and its linked survivability since around 2007.Journal of Glaciology, 70, 1-11.
22)Ogilvie, A., King, L., Keenlyside, N., Counillon, F., Davidsdottir, B., Einarsson, N., Gulev, S.,Fan, K., Koenigk, T., Mcgoodwin, J., Rasmusson, M., Yang, S. T.2024:Recent ventures in interdisciplinary Arctic research: The ARCPATH project.Advances in Atmospheric Sciences, 41, 1559-1568.
23)Tian, B. Q.,Fan, K.*2024:Climate prediction of the seasonal sea-ice early melt onset in the Bering Sea.Atmospheric and Oceanic Science Letters,17, 100417.
24)Xie, Y. F.,Fan, K.*, Yang, H. Q.2024:Why are Arctic sea ice concentration in September and its interannual variability well predicted over the Barents–East Siberian Seas by CFSv2?.Journal of Meteorological Research, 38, 53-68.
25)Xu, Z. Q.,Fan K.*2024:Enhanced interannual variability of the May North Atlantic Oscillation and its impact on summer sea ice in the North Atlantic after the mid-2000s.Atmospheric Research, 311, 107703.
26)Yang, H. Q.,Fan, K.*2024:The causes of intraseasonal alternating warm and cold variations over China in winter 2021/22.Journal of Climate, 37, 5153-5170.
27)Yi, D. L.,Fan, K.*, He, S. P., Wang, P.2024:Sea-ice-loss slowdown modulates the sea surface salinification in the Kara–Laptev Seas since the 2008 summer.Environmental Research Letters, 19, 084022.
28)Yi, D. L.,Fan, K.*, He, S. P.2024:Thermodynamic and dynamic contributions to the abrupt increased winter Arctic sea ice growth since 2008.Environmental Research Letters, 19(1), 014048.
29)Zhang, A. J., Yi, D. L.,Fan, K.*2024:Nonstationary thermodynamic and dynamic contributions to the interannual variability of winter sea ice growth in the Kara–Laptev Seas.Environmental Research Letters, 19, 064067.
30)Zhang, H.,Fan, K.*2024:Intraseasonal northward evolution of the extreme autumn rainfall event in West China in 2021.Atmospheric Research, 304, 107394.
31)范可*,田宝强,戴海霞.2024:中国夏季月际—季节平均降水动力和统计结合实时预测模型.大气科学,48, 359-375.
32)马潇祎,范可*,杨洪卿.2024:2021年盛夏中国东部极端降水月际演变成因及可预测性.大气科学学报, 47, 541-556.
33)王娟,范可*,徐志清.2024:5月中国土壤湿度异常对7月华南–青藏高原东部偶极子型降水年际变化的影响.大气科学学报, 47, 108-123.
34)Fan, K.*, Yang, H. Q., Dai, H. X.2023:Research progress on inter-monthly winter temperature variation in East Asia and climate prediction.Atmospheric and Oceanic Science Letters. 16, 100372.
35)Gao, Y. P.,Fan, K.*, Xu, Z. Q.2023:Causes of the unprecedented month-to-month persistent extreme heat event over South China in early summer 2020: Role of sea surface temperature anomalies in the tropical Indo-Pacific region.Journal of Geophysical Research: Atmospheres, 128, e2022JD038422.
36)Ji, L. Q.,Fan, K.*2023:Extreme heat waves in June 2021 over Europe regulated by shrinking Eurasian snow cover in mid–high latitudes.Atmospheric Research, 295, 107049.
37)Shan, Q.,Fan, K.*2023:Subseasonal predictability of the transition of the stratospheric polar vortex: A case study in winter 1987/88.Atmospheric and Oceanic Science Letters, 16, 100318.
38)Wang, J.,Fan, K.*, Xu, Z. Q., Liu, S. F.*2023:A dipole pattern of July precipitation between South China and the eastern Tibetan Plateau and impacts of ENSO.Climate Dynamics, 61, 5785-5804.
39)Xu, Z. Q.,Fan, K.2023:Comparison of changes in quasi-biweekly oscillation intensity over the western North Pacific during the developing late-summer of super El Niño events.Atmospheric Research, 295, 107039.
40)Yang, H. Q.,Fan, K.*, Dai, H. X.2023:Prediction of intermonth modes of winter air temperature over China.Journal of Climate, 36, 4031-4049.
41)Zhao, J. Z., He, S. P.,Fan, K., Wang, H. J., Li, F.2023:Projecting wintertime newly-formed Arctic sea ice through weighting CMIP6 model performance and independence.Advances in Atmospheric Sciences, 41, 1465-1482.
42)马潇祎,范可*.2023:近几十年中国西北夏秋季干湿年代际变化及成因初步分析.大气科学, 47, 943-956.
43)徐依梵,范可*,徐志清.2023:1月北大西洋东部-乌拉尔山阻塞高压频次年际尺度偶极子模态特征.大气科学学报, 46, 837-847.
44)张婵,范可,徐志清,杨启东.2023:欧洲东部土壤湿度对东北亚初夏气温异常转折的影响及其可能物理过程.大气科学学报, 46, 532-548.
45)Dai, H. X.,Fan, K.*2022:Subseasonal reversal of winter temperature over Northeast China in 2014/2015: Role of Arctic Sea ice.Frontiers in Environmental Science, 10, 852673.
46)Ji, L. Q.,Fan, K.*2022:Interannual relationship between haze days in December-January and satellite-based leaf area index in August-September over central North China.Remote Sensing, 14, 884.
47)Li, H. S.,Fan, K.*2022:Dominant patterns of winter surface air temperature over Central Asia and their connection with atmospheric circulation.Atmospheric and Oceanic Science Letters, 15,100210.
48)Li, H. S.,Fan, K.*, Li, H., Xu, Z. Q.2022:Impacts of central tropical Pacific SST on the reversal of December and January surface air temperature anomalies over central Asia.Frontiers in Earth Science, 10, 873040.
49)Shan, Q.,Fan, K.*2022:The transition of stratospheric polar vortex intensity: A case study of winter 1987/88.Journal of Geophysical Research: Atmospheres, 127, e2022JD036511.
50)Tian, B. Q.,Fan, K.*2022:New downscaling prediction models for spring drought in China.International Journal of Climatology, 42, 6960-6975.
51)Wu, L. Q., Wang, B., Chan, J. C. L., Ha, K.-J., Moon, II-J., Matsumoto, J., Tan, Z. M.,Fan, K.2022:Preface to the Special Issue: Climate Change and Variability of Tropical Cyclone Activity.Advances in Atmospheric Sciences, 39, 203-204.
52)Wang, L. S.,Fan, K.*2022:Synoptic and climatic conditions of an extreme snowstorm event over Northeast China and its climate predictability.Frontiers in Earth Science, 10.
53)Xu, Z. Q.,Fan, K.2022:Inter-model spreading of changes in East Asian winter monsoon circulation under 1.5 and 2.0°C global warming targets.International Journal of Climatology, 42, 4360-4378.
54)Xu, Z. Q.,Fan, K.*2022:Enhanced intensity of the interannual variability of February surface air temperature over mid- and high-latitude Asia since the late-1990s.Journal of Geophysical Research: Atmospheres, 127, e2022JD036873.
55)Yang, H. Q.,Fan, K.*2022:Reversal of monthly East Asian winter air temperature in 2020/21 and its predictability.Atmospheric and Oceanic Science Letters. 15, 100142.
56)Yi, D. L., Melnichenko, O., Hacker, P.,Fan, K.*2022:Satellite-observed time and length scales of global sea surface salinity variability: A comparison of three satellite missions.Remote Sensing, 14, 5435.
57)Zhou, H. B.,Fan, K.*2022:Decadal change of the linkage between the sea ice over the Barents–Kara Seas in November–December and the stratospheric polar vortex in subsequent January.Journal of Meteorological Research, 36, 601-617.
58)Zhou, H. B.,Fan, K.*2022:Intensified impact of equatorial QBO in August–September on northern stratospheric polar vortex in December–January since the late 1990s.Journal of Meteorological Research, 36, 703-717.
59)宦杜斌,范可*,徐志清.2022:自20世纪90年代中后期夏季巴伦支海海冰与秋季中国西南地区干旱的联系加强.大气科学学报, 45, 167-178.
60)Dai, H. X.,Fan, K.*2021:An effective downscaling model for operational prediction of summer precipitation over China.Atmospheric Research, 257, 105621.
61)Fan, Y.,Fan, K.*, Xu, Z. Q.2021:Intraseasonal oscillation intensity over the western North Pacific: Projected changes under global warming.Atmospheric and Oceanic Science Letters, 14, 100046.
62)Li, H.,Fan, K., He, S. P., Liu, Y., Yuan, X., Wang, H. J.2021:Intensified impacts of central Pacific ENSO on the reversal of December and January surface air temperature anomaly over China since 1997.Journal of Climate, 34, 1601-1618.
63)Li, H., He, S. P.,Fan, K., Liu, Y., Yuan, X.2021:Recent intensified influence of the winter North Pacific sea surface temperature on the Mei-Yu withdrawal date.Journal of Climate, 34, 3869-3887.
64)Liu, Y.,Fan, K., Chen, L. J., Ren, H. L., Wu, Y. J., Liu, C. Z.2021:An operational statistical downscaling prediction model of the winter monthly temperature over China based on a multi-model ensemble.Atmospheric Research, 249, 105262.
65)Tian, B. Q.,Fan, K.*2021:Absence of tropical cyclone genesis over the western North Pacific in July 2020 and its prediction by CFSv2.Frontiers in Earth Science, 9, 771172.
66)Yang, H. Q.,Fan, K.*202:A hybrid ensemble canonical correlation prediction model of the winter Siberian High.Journal of Geophysical Research: Atmospheres, 126, e2020JD033780.
67)Yang, H. Q.,Fan, K.*2021:Strengthened impacts of November snow cover over Siberia on the out-of-phase change in the Siberian High between December and January since 2000 and implication for intraseasonal climate prediction.Frontiers in Earth Science, 9, 748484.
68)Yin, Z. C., Wang, H. J., Liao, H.,Fan, K., Zhou, B. T.2021:Seasonal to interannual prediction of air pollution in China: Review and insight.Atmospheric and Oceanic Science Letters, 15, 100131.
69)Zhou, H. B.,Fan, K.*2021:Intensified impact of winter Arctic Oscillation on simultaneous precipitation over the mid-high latitudes of Asia since the early 2000s.Frontiers in Earth Science, 9, 782388.
70)肖哨,田宝强,范可*.2021:CFSv2模式对春季逐月南极涛动预测效能及成因分析.气候与环境研究, 26, 621-636.
71)杨洪卿,范可*,田宝强,华维.2021:为什么NCEP-CFSv2模式对11月西伯利亚高压强度的预测性能较好.大气科学, 45(4), 697-712.
六、荣誉获奖:
1)2022年全球前2%顶尖科学家榜单,斯坦福大学与爱思唯尔出版社,2023年
2)杰出贡献教师,中国科学院大气地球与行星科学学院,2023年
3)2020年全球前2%顶尖科学家榜单,斯坦福大学与爱思唯尔出版社,2021年
4)导师韶华贡献奖,中国科学院大气物理研究所,2021年