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Modeling of wetting-drying transitions in free surface flows over complex topographies

机译:复杂地形上自由表面流中的干湿转变建模

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Numerical techniques development for the modeling and simulation of free surface flows has generated great interests over the last decades. In hydraulic engineering, the objectives include the predictions of dam break waves' propagation, fluvial floods and other catastrophic flooding phenomenon, the modeling of estuarine and coastal circulations, and the design and optimization of hydraulic structures. Most of the flooding events involve wetting and drying lands which are critical for the numerical modeling, especially when dealing with complex topographies. Extreme slopes and abrupt changes in irregular geometries, have often led to significant numerical errors and stability difficulties, and these are more critical for propagations over complex dry beds. This paper presents a simple and efficient numerical model for the wetting and drying effects over complex bathymetries. An overview of the key methods that have been suggested since the pioneering studies is first presented. A 2-D cell-centered finite-volume scheme is then proposed for solving the shallow-water equations using both structured and unstructured fixed meshes. Steady state C-property and global mass conservation properties are satisfied using appropriate numerical fluxes and wet/ dry interfaces treatments. The resulting numerical model proved stable and robust and was validated through some benchmarks tests, including comparisons with exact solutions and experimental data, and a real case of wetting-drying simulation in a portion of the river "Riviere des Prairies" in a suburb of Laval, Quebec.
机译:在过去的几十年中,用于自由表面流动的建模和仿真的数值技术发展引起了人们极大的兴趣。在水利工程中,目标包括对溃坝波的传播,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。大多数洪水事件都涉及润湿和干燥土地,这对于数值模拟至关重要,尤其是在处理复杂地形时。极端的坡度和不规则几何形状的突然变化,通常会导致严重的数值误差和稳定性困难,而这对于在复杂的干床上传播至关重要。本文提出了一种简单有效的数值模型,用于复杂水深的润湿和干燥效果。自开创性研究以来,已提出了一些关键方法的概述。然后,提出了一种二维单元中心有限体积方案,用于使用结构化和非结构化固定网格求解浅水方程。使用适当的数值通量和干/湿界面处理,可以满足稳态C性质和整体质量守恒性质。所得的数值模型经证明是稳定且可靠的,并通过一些基准测试进行了验证,包括与精确的解决方案和实验数据进行比较,以及拉瓦尔郊区“ Riviere des Prairies”部分河流的干湿模拟的真实案例魁北克。

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