A hydrodynamic model coupled multiple scenarios for plain river network and its application

The plain river network is not only complex in shape but also contains many complex scenarios, such as interval inflow and outflow, hydraulic structures and water storage area, etc., which increases the difficulty of runoff simulation in plain river network. To address this problem, a hydrodynamic (...

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Main Authors: Zeng Zhiqiang, Liang Ji, Yang Mingxiang, Zeng Zhaocai, Lang Yu
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201824601016
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spelling doaj-7255eb1c7dd0401989102969b6afd25f2021-03-02T09:36:45ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012460101610.1051/matecconf/201824601016matecconf_iswso2018_01016A hydrodynamic model coupled multiple scenarios for plain river network and its applicationZeng Zhiqiang0Liang Ji1Yang Mingxiang2Zeng Zhaocai3Lang Yu4Huazhong University of Science and Technology, School of Hydropower & Information EngineeringHuazhong University of Science and Technology, School of Hydropower & Information EngineeringState Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower ResearchHuazhong University of Science and Technology, School of Hydropower & Information EngineeringState Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower ResearchThe plain river network is not only complex in shape but also contains many complex scenarios, such as interval inflow and outflow, hydraulic structures and water storage area, etc., which increases the difficulty of runoff simulation in plain river network. To address this problem, a hydrodynamic (HD) model coupled multiple scenarios that may occur in plain river network was proposed, which was used to simulate the runoff process of the plain river network. To illustrate the proposed model, Xi River was chosen as a study area. We designed some experiments for each scenario, and the experimental results show that simulation results have good consistency with the observation. It is worth noting that the simulation accuracy of the water level is always higher than the simulation accuracy of the flow. Moreover, the runoff simulation accuracy of runoff events with large runoff is relatively high. It turns out that HD model is suitable for runoff simulation of plain river network. In addition, we compared the flood diversion effects of water storage area and sluice, and the results show that the effect of water storage area is more obvious than sluice, and the flood diversion method combined with sluice and water storage area has better flood diversion effect. In conclusion, HD model is good at simulating floodplain storage effects, backwater and the change of water level and flow under the condition of engineering dispatching, which has important guiding significance for flood control in plain river network.https://doi.org/10.1051/matecconf/201824601016
collection DOAJ
language English
format Article
sources DOAJ
author Zeng Zhiqiang
Liang Ji
Yang Mingxiang
Zeng Zhaocai
Lang Yu
spellingShingle Zeng Zhiqiang
Liang Ji
Yang Mingxiang
Zeng Zhaocai
Lang Yu
A hydrodynamic model coupled multiple scenarios for plain river network and its application
MATEC Web of Conferences
author_facet Zeng Zhiqiang
Liang Ji
Yang Mingxiang
Zeng Zhaocai
Lang Yu
author_sort Zeng Zhiqiang
title A hydrodynamic model coupled multiple scenarios for plain river network and its application
title_short A hydrodynamic model coupled multiple scenarios for plain river network and its application
title_full A hydrodynamic model coupled multiple scenarios for plain river network and its application
title_fullStr A hydrodynamic model coupled multiple scenarios for plain river network and its application
title_full_unstemmed A hydrodynamic model coupled multiple scenarios for plain river network and its application
title_sort hydrodynamic model coupled multiple scenarios for plain river network and its application
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description The plain river network is not only complex in shape but also contains many complex scenarios, such as interval inflow and outflow, hydraulic structures and water storage area, etc., which increases the difficulty of runoff simulation in plain river network. To address this problem, a hydrodynamic (HD) model coupled multiple scenarios that may occur in plain river network was proposed, which was used to simulate the runoff process of the plain river network. To illustrate the proposed model, Xi River was chosen as a study area. We designed some experiments for each scenario, and the experimental results show that simulation results have good consistency with the observation. It is worth noting that the simulation accuracy of the water level is always higher than the simulation accuracy of the flow. Moreover, the runoff simulation accuracy of runoff events with large runoff is relatively high. It turns out that HD model is suitable for runoff simulation of plain river network. In addition, we compared the flood diversion effects of water storage area and sluice, and the results show that the effect of water storage area is more obvious than sluice, and the flood diversion method combined with sluice and water storage area has better flood diversion effect. In conclusion, HD model is good at simulating floodplain storage effects, backwater and the change of water level and flow under the condition of engineering dispatching, which has important guiding significance for flood control in plain river network.
url https://doi.org/10.1051/matecconf/201824601016
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