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A New Total Variation Diminishing Predictor Corrector Approach for Two-Dimensional Shallow Water Flow

机译:二维浅水流的总变化量减小预测器校正新方法

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This paper presents a new efficient and robust hydrodynamic model for simulation of unsteady shallow water flow. The governing equations of shallow water flows in two dimensional forms are solved using a new total variation diminishing (TVD) MacCormack predictor corrector scheme. In this numerical technique an additional TVD term is added after the traditional predictor corrector steps. The advantage of the present TVD term is that it is very simple and gives accurate results at the same time removing the numerical oscillations. Further, application of semi implicit treatment of the friction slope term helps in flow simulation even with very low water depth. Finally the model is used to analyze a wide variety of hydraulic problems including quiescent water above irregular bed, steady flow over irregular bed, steady flow over irregular bed with a shock, dam break flow over dry bed and dam break flow over wet bed. For each of the cases numerical results are compared with available analytical solution and known experimental data. The agreements between the results are satisfactory.
机译:本文提出了一种新的高效鲁棒的水动力模型,用于模拟非稳态浅水流动。使用新的总变差递减(TVD)MacCormack预测器校正器方案来求解二维形式的浅水流控制方程。在这种数值技术中,在传统的预测器校正器步骤之后添加了一个附加的TVD项。当前TVD项的优势在于它非常简单,并且在消除数值振荡的同时给出了准确的结果。此外,即使在非常低的水深下,对摩擦斜率项进行半隐式处理的应用也有助于进行流量模拟。最后,该模型用于分析各种水力问题,包括不规则床上方的静态水,不规则床上方的稳定水流,不规则床带冲击的稳定水流,干床上方的溃坝流量和湿床上方的溃坝流量。对于每种情况,将数值结果与可用的分析解决方案和已知的实验数据进行比较。结果之间的协议令人满意。

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