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Application of Free-Surface Immersed-Boundary Lattice Boltzmann Method to Waves Acting on Coastal Structures

机译:自由表面浸入边界格子Boltzmann方法在作用于沿海结构的波浪中的应用

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摘要

A free-surface immersed-boundary lattice Boltzmann method for wave-structure interaction and hydrodynamic force estimation is introduced as a proposed model with example applications. The single-phase free-surface lattice Boltzmann method is coupled with a simple immersed-boundary modification in order to simulate demanding free surface wave problems and to evaluate the hydrodynamic forces on a breakwater. The immersed-boundary modification also enables a seepage flow simulation without any external model. First, the proposed model is applied to incident wave propagation in a shallow water zone to demonstrate the model performance on traveling successive waves and wave effects on groundwater on a porous slope. The wave-breakwater interactions and wave forces on a breakwater are then analyzed. The results agree with those of Goda's formulae in all cases and with the third-order force expression from standing wave theory in nonoverflowing cases, confirming that the proposed model has a high potential for application to complex analysis of coastal engineering problems.
机译:提出了一种用于波浪结构相互作用和水动力估计的自由表面浸入边界晶格玻尔兹曼方法,并作为示例模型。单相自由表面晶格玻尔兹曼方法与简单的浸入边界修改相结合,以模拟苛刻的自由表面波问题并评估防波堤上的流体动力。浸入式边界修改还可以在没有任何外部模型的情况下进行渗流模拟。首先,将所提出的模型应用于浅水区的入射波传播,以证明该模型对连续波传播和波对多孔斜坡上地下水的影响的性能。然后分析了防波堤上的波浪-防波堤相互作用和波浪力。结果与所有情况下的Goda公式相符,并且与非溢流情况下的驻波理论中的三阶力表达式相吻合,证实了该模型具有很高的潜力,可用于复杂的海岸工程问题分析。

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