国家青藏高原科学数据中心
博士,中国科学院青藏高原研究所研究员,国家青藏高原科学数据中心主任,中科院青藏高原地球科学卓越创新中心核心骨干,国家杰出青年科学基金获得者。1992年毕业于南京大学大地海洋科学系,1998年在中国科学院兰州冰川冻土研究所获博士学位。在流域集成研究、陆面数据同化、冰冻圈遥感与信息系统研究方面取得了创新性科研成绩,包括领导实施了“黑河遥感试验”(2007-2017),被国际同行评价为“世界级的观测”、“中国内容最丰富的水文遥感试验”;发展了我国大尺度陆面数据同化系统及高分辨率的流域尺度陆面水文数据同化系统,在非线性滤波算法、多源遥感数据同化等方面取得了领先成果。获得甘肃省自然科学一等奖、甘肃省科技进步一等奖、中国科学院杰出科技成就奖、测绘科技进步奖一等奖、中国科学院王宽诚西部学者突出贡献奖;入选中青年科技创新领军人才并获“有突出贡献中青年专家”称号。已发表学术论文500余篇(SCI收录330+),论文总引用26000+(SCI引用14000+)。曾任世界气候研究计划/全球能水交换项目(WCRP/GEWEX)科学指导委员会委员;现任全球水未来研究计划科学指导委员会委员、联合国教科文组织国际水文计划干旱区水与发展全球信息网络(UNESCO IHP G-WADI)亚洲区秘书长、GEWEX中国委员会副主席;任Science Bulletin, Journal of Hydrology, Vadose Zone Journal, 《中国科学 地球科学》等多个国际期刊的编委;《遥感学报》、 《遥感技术与应用》副主编和《地球科学进展》、《大气科学》、《地球信息科学学报》等国内期刊编委。目前主持中国科学院A类战略性先导科技专项“地球大数据科学工程”项目“时空三极环境”、国家重点研发计划项目“生态系统关键参量监测设备研制与生态物联网示范”。
[1] Li, X.*, Feng, M.*, Ran, Y.H., Su, Y., Liu, F., Huang, C.L., Shen, H.F., Xiao, Q., Su, J.B., Yuan, S.W., Guo, H.D. Big Data in Earth system science and progress towards a digital twin. Nature Reviews Earth & Environment, 2023, 4(5): 319-332, doi: 10.1038/s43017-023-00409-w.
[2]Li, X.*, Cheng, G.D., Fu, B.J., Xia, J., Zhang, L., Yang, D.W., Zheng, C.M., Liu, S.M., Li, X.B., Song, C.Q., Kang, S.Z., Li, X.Y., Che, T., Zheng, Y., Zhou, Y.Z., Wang, H.B., Ran, Y.H. Linking critical zone with watershed science: The example of the Heihe River basin. Earth's Future, 2022, 10(11): e2022EF002966, doi: 10.1029/2022EF002966.
[3]Fang, M., Li, X.*, Chen, H.W.*, Chen, D. Arctic amplification modulated by Atlantic Multidecadal Oscillation and greenhouse forcing on multidecadal to century scales. Nature Communications, 2022, 13(1): 1865, doi: 10.1038/s41467-022-29523-x.
[4]Li, X.*, Cheng, G.D., Wang, L.X., Wang, J.L., Ran, Y.H., Che, T., Li, G.Q., He, H.L., Zhang, Q., Jiang, X.Y., Zou, Z.M., Zhao, G.F. Boosting geoscience data sharing in China. Nature Geoscience, 2021, 14(8): 541-542, doi: 10.1038/s41561-021-00808-y.
[5] Li, X.*, Liu, F., Fang, M. Harmonizing models and observations: Data assimilation in Earth system science. Science China Earth Sciences, 2020, 63(8): 1059-1068, doi: 10.1007/s11430-019-9620-x.
[6] Li, X.*, Che, T., Li, X.W., Wang, L., Duan, A.M., Shangguan, D.H., Pan, X.D., Fang, M., Bao, Q. CASEarth Poles: Big data for the Three Poles. Bulletin of the American Meteorological Society, 2020, 101(9): E1475-E1491, doi: 10.1175/BAMS-D-19-0280.1.
[7] Li, X.*, Cheng, G.D., Lin, H., Cai, X.M., Fang, M., Ge, Y.C., Hu, X.L., Chen, M., Li, W.Y. Watershed system model: The essentials to model complex human-nature system at the river basin scale. Journal of Geophysical Research: Atmospheres, 2018, 123(6): 3019-3034, doi: 10.1002/2017JD028154.
[8] Li, X.*, Cheng, G.D., Ge, Y.C., Li, H.Y., Han, F., Hu, X.L., Tian, W., Tian, Y., Pan, X.D., Nian, Y.Y., Zhang, Y.L., Ran, Y.H., Zheng, Y., Gao, B., Yang, D.W., Zheng, C.M., Wang, X.S., Liu, S.M., Cai, X.M. Hydrological cycle in the Heihe River Basin and its implication for water resource management in endorheic basins. Journal of Geophysical Research: Atmospheres, 2018, 123(2): 890-914, doi: 10.1002/2017JD027889.
[9]Ran, Y.H., Li, X.*, Cheng, G.D. Climate warming over the past half century has led to thermal degradation of permafrost on the Qinghai–Tibet Plateau. The Cryosphere, 2018, 12(2): 595-608, doi: 10.5194/tc-12-595-2018.
[10] Cheng, G.D., Li, X.*, Zhao, W.Z., Xu, Z.M., Feng, Q., Xiao, S.C., Xiao, H.L. Integrated study of the water-ecosystem-economy in the Heihe River Basin. National Science Review, 2014, 1(3): 413-428, doi: 10.1093/nsr/nwu017.