招生工作

严子奇

姓名

严子奇

出生年月

1983年10月

性别

职称

正高级工程师

职务

研究方向

流域水循环模拟、气候变化下水循环响应与适应性调控、干旱风险与综合防控

电子邮件

yanzq@iwhr.com

电话

010-68785606

学术和专业经历

2002.09-2006.06,河海大学水资源环境学院,地理信息系统专业学士

2006.09-2011.06,中国科学院地理科学与资源研究所,自然地理学博士(硕博连读)

2009.11-2010.10,挪威奥斯陆大学,自然地理学联合培养博士

2011.07-2014.11,中国水利水电科学研究院水资源所,工程师

2014.12-2020.05,中国水利水电科学研究院水资源所,高级工程师

2020.06至今,中国水利水电科学研究院水资源所,正高级工程师

2017.12至今,流域水循环模拟与调控国家重点实验室,固定研究人员

研究领域和主要研究成果

主要从事流域水循环模拟、气候变化下水循环响应与适应性调控、干旱风险与综合防控等研究。主持“十四五”国家重点研发计划课题1项、国家自然科学基金3项,承担中国工程院重大咨询项目、水利部水利前期计划项目等省国家级、部级重点科研项目和重大水利工程论证项目70余项。提出了江河湖库旱限水位确定技术体系、开发了面向供水-发电-生态的梯级水库多目标联合调度模型,拓展了气候变化下大尺度流域水文集合预估算法。成果发表在Water Resources Research、Journal of Hydrology、《水利学报》、《水科学进展》等高水平期刊,并已在多个省份、流域和重大水利工程论证中得到了实际应用。获国家优质工程奖1项,省部级科技进步奖一等奖3项,三等奖2项,厅局级特等奖1项,一等奖3项。发表论文66篇,其中SCI论文17篇,EI论文11篇。参编专著8部。获得国家发明专利38项,国际发明专利2项。

代表性论文:

[1]     蒋云钟, 严子奇*, 贾绍凤, 杨汉波, 畅建霞, 吴泽宁. 全球变化背景下特大干旱综合应对研究框架[J]. 水利学报, 2023, 54(3): 347-357(EI)

[2]     严子奇*, 周祖昊, 严登华, 韦瑞深.江河断面分级分期旱限水位(流量)确定方法[J].水科学进展, 2023, 34(1): 53-62(EI)

[3]    韦瑞深, 严子奇*, 周祖昊, 蒋云钟. 基于宽浅式破坏原则的水库旱限水位优化确定技术[J]. 水资源保护2023, 39(4): 152-166 (EI)

[4]     Kai Feng, Ziqi Yan*, Yanbin Li, Fei Wang, Zezhong Zhang, Xiaoling Su, Haijiang Wu, Gengxi Zhang, Yingying Wang. Spatio-temporal dynamic evaluation of agricultural drought based on a three-dimensional identification method in Northwest China. Agricultural Water Management 284 (2023) 108325(SCI)

[5]     Jinli Zheng, Zuhao Zhou*, Jiajia Liu, Ziqi Yan, Chong-Yu Xu, Yunzhong Jiang, Yangwen Jia, Hao Wang. A novel framework for investigating the mechanisms of climate change and anthropogenic activities on the evolution of hydrological drought. Science of the Total Environment, 2023, 900, 165685(SCI)

[6]    严子奇*, 周祖昊, 韦瑞深, 严登华, 王坤. 基于双层滑动的水库旱限水位确定算法. 水科学进展, 2022, 33(6): 914-923(EI)

[7]    周祖昊, 刘佳嘉*, 严子奇, 王浩, 贾仰文.黄河流域天然河川径流量演变归因分析.水科学进展, 2022, 33(1): 27-37 (EI)

[8]     Yan, Z. *, Zhou, Z., Liu, J., Han, Z., Gao, G., & Jiang, X. (2020). Ensemble projection of runoff in a large‐scale basin: Modeling with a global BMA approach. Water Resources Research, 56, e2019WR026134. (SCI)

[9]     Ziqi Yan*, Zuhao Zhou, Jiajia Liu, Tianfu Wen, Xuefeng Sang, Fanping Zhang. 2020. Multiobjective optimal operation of reservoirs based on water supply, power generation and the river ecosystem with a new water resource allocation model. Journal of Water Resources Planning and Management, 10.1061/(ASCE)WR.1943-5452.0001302(SCI)

[10]  Ziqi Yan*, Zuhao Zhou, Jiajia Liu, Hao Wang & Dong Li. (2020) Water use characteristics and impact factors in the Yellow River basin, China, Water International, 45:3, 148-168 (SCI)

[11]  Ziqi Yan*, Zuhao Zhou, Xuefeng Sang, Hao Wang, Yangwen Jia. 2020. Water replenishment for ecological flow with E-WAS framework: a case study of the Longgang River Basin, Shenzhen, China. Hydrological processes and water security in a changing world, Proc. IAHS, 383, 327–339 (EI)

[12]  Yan, Z. *, Zhou, Z., Liu, J. (2020). Ensemble projection of runoff for the next 30-50 years in the Yellow River Basin with BMA approach. Proceedings of the 22nd IAHR-APD Congress 2020, Sapporo, Japan , 4-5-1(EI)

[13]  Jiajia Liu, Zuhao Zhoua*, Ziqi Yan, Jiaguo Gong, Yangwen Jia, Chong-Yu Xu, Hao Wang. A new approach to separating the impacts of climate change and multiple human activities on water cycle processes based on a distributed hydrological model. Journal of Hydrology, 2019, 578, 124096 (SCI)

[14]  Ziqi Yan*, Zuhao Zhou, Xuefeng Sang, Hao Wang. Water replenishment for ecological flow with an improved water resources allocation model. Science of the Total Environment, 2018, 643: 1152-1165 (SCI)

[15]  Ziqi Yan*, Yapeng Zhang, Zuhao Zhou, Ning Han. The Spatio-Temporal Variability of Droughts Using the Standardized Precipitation Index in Yunnan, China. Natural Hazards, 2017, 88: 1023-1042 (SCI)

[16]  Ziqi Yan*, Lars Gottschalk, Jianhua Wang. Signal to noise ratio in water balance maps of different resolution. Journal of Hydrology, 2016, 543: 218-229. (SCI)

 

 

 


 
 
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