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首页> 外文期刊>International Journal for Numerical Methods in Fluids >A well-balanced explicit/semi-implicit finite element scheme for shallow water equations in drying-wetting areas
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A well-balanced explicit/semi-implicit finite element scheme for shallow water equations in drying-wetting areas

机译:干湿地区浅水方程组的均衡均衡显式/半隐式有限元格式

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摘要

Numerical solutions of the shallow water equations can be used to reproduce flow hydrodynamics occurring in a wide range of regions. In hydraulic engineering, the objectives include the prediction of dam break wave propagation, fluvial floods and other catastrophic flooding phenomena, the modeling of estuarine and coastal circulations, and the design and optimization of hydraulic structures. In this paper, a well-balanced explicit and semi-implicit finite element scheme for shallow water equations over complex domains involving wetting and drying is proposed. The governing equations are discretized by a fractional finite element method using a two-step Taylor-Galerkin scheme. First, the intermediate increment of conserved variable is obtained explicitly neglecting the pressure gradient term. This is then corrected for the effects of pressure once the pressure increment has been obtained from the Poisson equation. In order to maintain the 'well-balanced' property, the pressure gradient term and bed slope terms are incorporated into the Poisson equation. Moreover, a local bed slope modification technique is employed in drying- wetting interface treatments. The proposed model is well validated against several theoretical benchmark tests.
机译:浅水方程的数值解可以用来重现在广泛区域中发生的流动流体动力学。在水利工程中,目标包括对溃坝波传播,河流洪水和其他灾难性洪水现象的预测,河口和沿海环流的建模以及水力结构的设计和优化。本文提出了一个涉及湿润和干燥的复杂区域上浅水方程组的均衡的显式和半隐式有限元方案。控制方程通过分数有限元方法使用两步泰勒-加勒金格式离散化。首先,显式地忽略压力梯度项而获得保守变量的中间增量。一旦从泊松方程中获得了压力增量,就可以对压力的影响进行校正。为了保持“良好平衡”的特性,将压力梯度项和床坡度项合并到泊松方程中。此外,在干燥-润湿界面处理中采用了局部床坡度修改技术。所提出的模型已针对几种理论基准测试进行了很好的验证。

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