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

机译:普通河网的流体动力学模型耦合多种场景及其应用

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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.
机译:普通河网络不仅复杂,而且还包含许多复杂的情景,例如间隔流入和流出,液压结构和储水区等,这增加了普通河网络中径流模拟的难度。为了解决这个问题,提出了一种流体动力学(HD)模型耦合可能发生在普通河网络中的多种场景,其用于模拟普通河网络的径流过程。为了说明所提出的模型,XI河被选为研究区。我们为每种情况设计了一些实验,实验结果表明,仿真结果与观察结果良好。值得注意的是,水位的仿真精度总是高于流量的模拟精度。此外,具有大径流的径流事件的径流模拟精度相对较高。事实证明,HD模型适用于普通河网络的径流模拟。此外,我们比较了储水域和闸门的洪水转移效应,结果表明,储水区的效果比闸门更明显,洪水转移方法与水闸和储水区相结合,具有更好的洪水转移效果。总之,高清模型擅长模拟洪泛区储存效果,反水和在工程调度条件下的水平和流量的变化,对普通河网络中防洪具有重要的指导意义。

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