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Simulation of 2D surface flow in open channel using explicit finite difference method

机译:明渠有限差分法模拟明渠二维水流

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2D surface flow models are useful to understand and predict the flow through breach, over a dyke or over the floodplains. This paper is aimed at the surface flows to study the behavior of flood waves. The open channel water flow in drains and rivers is considered in view of the fact that such flows are the source of flash flood. In order to predict and simulate the flood behavior a mathematical model with the initial and boundary conditions is established using 2D Saint-Venant partial differential equations. Next, the corresponding model is discretized by using the explicit finite difference method and implemented on MATLAB. For the testing and implementation purpose a simple rectangular flow channel is considered. The output parameters like height or depth of water, the fluid velocity and the volumetric flow rate are simulated numerically and visualized for the different time steps. The initial simulation results are useful to understand and predict the flood behavior at different locations of flow channel at specific time steps and can be helpful in early flood warning systems.
机译:2D表面流模型对于理解和预测穿过堤坝或漫滩的裂隙流量非常有用。本文针对地表水流研究洪水波的行为。考虑到排水沟和河流中的明渠水流,是因为此类水流是山洪的源头。为了预测和模拟洪水行为,使用2D Saint-Venant偏微分方程建立了具有初始条件和边界条件的数学模型。接下来,使用显式有限差分法离散化相应的模型,并在MATLAB上实现。为了测试和实现目的,考虑了简单的矩形流动通道。对输出参数(如水的高度或深度,流体速度和体积流率)进行数值模拟,并针对不同的时间步长进行可视化。初步的模拟结果有助于理解和预测特定时间步长的流道不同位置的洪水行为,并有助于早期洪水预警系统。

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