2025年4月4日 星期五
导师介绍

张弛

1986年生,江苏南通人,中国科学院地理资源所副研究员、硕士生导师。本科南京大学,博士北京大学。第四次《国家气候评估》报告撰写人,受邀担任多家知名学术期刊审稿人(包括不限于Journal of Climate, Geophysical Research LettersJournal of Hydrology等)。作为项目负责人和研究骨干主持和参与国家基金委青年、面上和联合基金、国家重点研发、中科院先导专项、中国科技云计算等项目十余项。

研究介绍:

课题组主要致力于气候变化背景下的区域水汽循环变化,在青藏高原降水水汽循环(moisture recycling)方向有系统研究,代表性学术论文单篇引用超200,在学界具有广泛影响,并获邀担任西藏自治区应急管理标准化技术委员会委员。

近期团队跟踪研究气候变化背景下典型流域的极端水文事件,通过耦合分布式水文模型(VIC)和水动力模型(CaMaFlood),来对典型流域洪涝和干旱等水文灾害进行模拟、监控和预警,研发系统获中国科技云平台推介(https://www.cstcloud.cn/kfkx/gxnyfw)。

未来团队将进一步打通地表水循环和大气水循环之间的关键环节,构建陆-气耦合水循环一体化的大水文圈,并以此为基础对我国绿水资源进行系统评估。

主要方向:长江流域水资源变化模拟与归因、黄河中下游洪旱监测预警系统研发、我国绿水资源评价、典型区域水汽循环过程

招生专业:水文学,气象学,GIS,自然地理

邮箱:zhangchi@igsnrr.ac.cn 

10篇代表学术论文:

Zhang, C., Tang, Q., Chen, D., 2017. Recent Changes in the Moisture Source of Precipitation over the Tibetan Plateau. Journal of Climate 30, 1807–1819. https://doi.org/10.1175/JCLI-D-15-0842.1 (高被引论文:200+次)

Zhang, C., Tang, Q., Chen, D., R.J., van der E., Liu, X., Li, W., Haile, G.G., 2019. Moisture Source Changes Contributed to Different Precipitation Changes over the Northern and Southern Tibetan Plateau. Journal of Hydrometeorology 20, 217–229. https://doi.org/10.1175/JHM-D-18-0094.1 (高被引论文:100+次)

Zhang, C., Tang, Q., Zhao, Y., Chen, D., Huang, J., Liu, Y., Zhang, X., 2024. Moisture source differences between the 2020 and 1998 super Meiyu-flood events in the Yangtze River Valley. Weather and Climate Extremes 100644. https://doi.org/10.1016/j.wace.2024.100644

Zhang, C., Zhang, X., Tang, Q., Chen, D., Huang, J., Wu, S., Liu, Y., 2024. Quantifying precipitation moisture contributed by different atmospheric circulations across the Tibetan Plateau. Journal of Hydrology 628, 130517. https://doi.org/10.1016/j.jhydrol.2023.130517

Zhang, C., Chen, D., Tang, Q., Huang, J., 2023. Fate and Changes in Moisture Evaporated from the Tibetan Plateau (2000–2020). Water Resources Research 59, e2022WR034165. https://doi.org/10.1029/2022WR034165

Zhang, C., Qi, W., Dong, J., Deng, Y., 2022. How the CMIP6 climate models project the historical terrestrial GPP in China. International Journal of Climatology 42, 9449–9461. https://doi.org/10.1002/joc.7834

Zhang, C., 2020. Moisture source assessment and the varying characteristics for the Tibetan Plateau precipitation using TRMM. Environmental Research Letters 15, 104003. https://doi.org/10.1088/1748-9326/abac78

Zhang, C., 2020. Moisture sources for precipitation in Southwest China in summer and the changes during the extreme droughts of 2006 and 2011. Journal of Hydrology 591, 125333. https://doi.org/10.1016/j.jhydrol.2020.125333

Zhang, C., Wu, S., Leng, G., 2020. Possible NPP changes and risky ecosystem region identification in China during the 21st century based on BCC-CSM2. Journal of Geographical Sciences 30, 1219–1232. https://doi.org/10.1007/s11442-020-1778-8

Zhang, C., Li, Q., 2014. Tracking the moisture sources of an extreme precipitation event in Shandong, China in July 2007: A computational analysis. Journal of Meteorological Research 28, 634–644. https://doi.org/10.1007/s13351-014-3084-9