Determining dynamic water level control boundaries for a multi-reservoir system during flood seasons with considering channel storage

被引:19
|
作者
Gong, Yu [1 ,2 ]
Liu, Pan [1 ,2 ]
Cheng, Lei [1 ,2 ]
Chen, Guiya [3 ]
Zhou, Yanlai [4 ]
Zhang, Xiaoqi [1 ,2 ]
Xu, Weifeng [1 ,2 ]
机构
[1] Wuhan Univ, State Key Lab Water Resources & Hydropower Engn S, Wuhan 430072, Hubei, Peoples R China
[2] Hubei Prov Collaborat Innovat Ctr Water Resources, Wuhan, Hubei, Peoples R China
[3] Changjiang Water Resources Commiss, Off Flood Control & Drought Relief, Wuhan, Hubei, Peoples R China
[4] Univ Oslo, Dept Geosci, Oslo, Norway
来源
JOURNAL OF FLOOD RISK MANAGEMENT | 2020年 / 13卷 / 01期
基金
中国国家自然科学基金;
关键词
aggregation-decomposition; channel storage reservoir; dynamic control boundary; multi-reservoir operation; water level during flood seasons; POWER-GENERATION; OPERATING RULES; OPTIMAL-DESIGN; RISK ANALYSIS; UNCERTAINTY; MODEL;
D O I
10.1111/jfr3.12586
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The dynamic control of reservoir water level during flood seasons (WLFS) allows a trade-off between flood control and water resources conservation. In this process, the WLFS dynamic control boundaries are key parameters. The channel flood routing affects the dynamic control operations. However, flood routing is seldom considered in multi-reservoir aggregation (a popular method for tackling the curse of dimensionality in multi-reservoir issues). To address this knowledge gap, this study conceptualises channel flood routing as a virtual channel storage reservoir (CSR) based on Muskingum flood routing in the aggregation method. The dynamic control boundaries for the multi-reservoir WLFS are then derived using the following aggregation-decomposition method: (a) the aggregation reservoir is created by considering channel storages, and the flood risk is quantified using pre-discharge rules; and (b) the aggregated reservoir storages are decomposed by maximising hydropower generation with constraints. The Xiluodu, Xiangjiaba and Three Gorges reservoir system on the Yangtze River, China, were selected for a case study. The annual power generation is 175.40 billion kWh when using static operation rules. With dynamic operation, the output would be 177.05 billion kWh if CSRs were not considered and 177.53 billion kWh if CSRs were considered. Thus, the proposed method can efficiently determine the dynamic control boundaries for the multi-reservoir WLFS.
引用
收藏
页数:17
相关论文
共 50 条
  • [31] Flood Mitigation through Optimal Operation of a Multi-Reservoir System by Using Model Predictive Control: A Case Study in Myanmar
    Lin, Nay Myo
    Rutten, Martine
    Tian, Xin
    WATER, 2018, 10 (10)
  • [32] The Model of Long-Term Optimal Operation of Multi-reservoir System Under the Cascade Storage Energy Control
    Niu, Wenjing
    Wu, Xinyu
    Feng, Zhongkai
    Shen, Jianjian
    Cheng, Chuntian
    WORLD ENVIRONMENTAL AND WATER RESOURCES CONGRESS 2015: FLOODS, DROUGHTS, AND ECOSYSTEMS, 2015, : 1962 - 1970
  • [33] Research on benefit of reservoir flood resources utilization based on the dynamic control of limited water level
    Huang, Xianfeng
    Chen, Yingqin
    Lin, Jie
    Fang, Guohua
    Qu, Xiaoping
    Zhu, Lixiang
    DESALINATION AND WATER TREATMENT, 2017, 79 : 214 - 220
  • [34] Credibility theory based dynamic control bound optimization for reservoir flood limited water level
    Jiang, Zhiqiang
    Sun, Ping
    Ji, Changming
    Zhou, Jianzhong
    JOURNAL OF HYDROLOGY, 2015, 529 : 928 - 939
  • [35] Risk Analysis of Dynamic Water Level Setting of Reservoir in Flood Season Based on Multi-index
    Zhenyu Mu
    Xueshan Ai
    Jie Ding
    Kui Huang
    Senlin Chen
    Jiajun Guo
    Zuo Dong
    Water Resources Management, 2022, 36 : 3067 - 3086
  • [36] Risk Analysis of Dynamic Water Level Setting of Reservoir in Flood Season Based on Multi-index
    Mu, Zhenyu
    Ai, Xueshan
    Ding, Jie
    Huang, Kui
    Chen, Senlin
    Guo, Jiajun
    Dong, Zuo
    WATER RESOURCES MANAGEMENT, 2022, 36 (09) : 3067 - 3086
  • [37] The Dynamic Control Bound of Flood Limited Water Level Considering Capacity Compensation Regulation and Flood Spatial Pattern Uncertainty
    Qiao-feng Tan
    Xu Wang
    Pan Liu
    Xiao-hui Lei
    Si-yu Cai
    Hao Wang
    Yi Ji
    Water Resources Management, 2017, 31 : 143 - 158
  • [38] The Dynamic Control Bound of Flood Limited Water Level Considering Capacity Compensation Regulation and Flood Spatial Pattern Uncertainty
    Tan, Qiao-feng
    Wang, Xu
    Liu, Pan
    Lei, Xiao-hui
    Cai, Si-yu
    Wang, Hao
    Ji, Yi
    WATER RESOURCES MANAGEMENT, 2017, 31 (01) : 143 - 158
  • [39] The maximum water-supply yield of the multi-reservoir system under the operating policy control with risk analysis
    Guo, Xu-Ning
    Hu, Tie-Song
    Zeng, Xiang
    Du, Yong-Xin
    Shuili Xuebao/Journal of Hydraulic Engineering, 2013, 44 (06): : 664 - 672
  • [40] Research on Water Level Control Scheme of Reservoir Flood Resources Utilization Considering Dam Safety and Risk Benefit
    Huang, Xianfeng
    Lin, Jie
    Qu, Xiaoping
    Fang, Guohua
    Zhu, Lixiang
    PROCEEDINGS OF THE 3RD INTERNATIONAL CONFERENCE ON MECHATRONICS, ROBOTICS AND AUTOMATION (ICMRA 2015), 2015, 15 : 67 - 72