Effects of the Land Use and Check Dams on Flood in Upper Catchment of Fuping Hydrological Station by Hydrological Modeling
- 作者: Chen F.1,2, Zheng J.2, Li S.3, Long A.4
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隶属关系:
- State Key Laboratory of Hydraulic Engineering Simulation and Safety
- College of Water Conservancy and Architectural Engineering
- Department of Hydraulic Engineering
- State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin
- 期: 卷 45, 编号 4 (2018)
- 页面: 508-522
- 栏目: Water Resources and the Regime of Water Bodies
- URL: https://ogarev-online.ru/0097-8078/article/view/174551
- DOI: https://doi.org/10.1134/S0097807818040103
- ID: 174551
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详细
Flood peaks and volumes had been detected a downward trend in Fuping hydrological station. To quantify the effects of check dams on flood peaks and volumes, a hydrological model integrating land use was established. The model performed well in flood processes simulation, and the Nash efficiency of the model was 0.72. Then the model was used to identify the comprehensive effects of land use and land cover change on flood processes by comparing the simulation results of the selected flood events under 1980 and 2000 land use and land cover conditions. 24.5, 37.7 and 51.3% decrease in flood peaks for flood events of greater than 10 years, 5~10 years and less than 5 years return periods, respectively, and 16.3, 27.9 and 28.5% decrease in flood volumes for the three groups flood events of different return periods. Contributions of land use change and check dams to decrease in flood peak and volume were simulated, and it was found that peak discharge and volume for each flood event responded differently to the two factors. The results in this study can provide valuable information on design flood calculation in the basin under land use and land cover change.
作者简介
Fulong Chen
State Key Laboratory of Hydraulic Engineering Simulation and Safety; College of Water Conservancy and Architectural Engineering
编辑信件的主要联系方式.
Email: cfl103@shzu.edu.cn
中国, Tianjin, 300072; Shihezi, 832000
Jintao Zheng
College of Water Conservancy and Architectural Engineering
Email: cfl103@shzu.edu.cn
中国, Shihezi, 832000
Shaofei Li
Department of Hydraulic Engineering
Email: cfl103@shzu.edu.cn
中国, Tianjin, 300384
Aihua Long
State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin
Email: cfl103@shzu.edu.cn
中国, Beijing, 10038
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