首页> 外文期刊>Archives of Hydroengineering and Environmental Mechanics >Lax-Wendroff and McCormack Schemes for Numerical Simulation of Unsteady Gradually and Rapidly Varied Open Channel Flow
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Lax-Wendroff and McCormack Schemes for Numerical Simulation of Unsteady Gradually and Rapidly Varied Open Channel Flow

机译:Lax-Wendroff和McCormack方案用于非恒定渐进快速变化明渠流的数值模拟

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摘要

Two explicit schemes of the finite difference method are presented and analyzed in the paper. The applicability of the Lax-Wendroff and McCormack schemes for modeling unsteady rapidly and gradually varied open channel flow is investigated. For simulation of the transcritical flow the original and improved McCormack scheme is used. The schemes are used for numerical solution of one dimensional Saint-Venant equations describing free surface water flow. Two numerical simulations of flow with different hydraulic characteristics were performed - the first one for the extreme flow of the dam-break type and the second one for the simplified flood wave propagation problem. The computational results are compared to each other and to arbitrary solutions.
机译:提出并分析了两种有限差分法的显式方案。研究了Lax-Wendroff和McCormack方案在快速,逐步变化的明渠流动建模中的适用性。为了模拟跨临界流,使用了原始的和改进的McCormack方案。该方案用于描述自由表面水流的一维Saint-Venant方程的数值解。对具有不同水力特性的流动进行了两个数值模拟-第一个模拟为溃坝型极端水流,第二个模拟为简化的洪水波传播问题。计算结果相互比较,并与任意解比较。

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