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Numerical Simulation of Nonlinear Water Waves based on Fully Nonlinear Potential Flow Theory in OpenFOAM R -Extend

机译:基于完全非线性潜在流理论的非线性水波的数值模拟R-extend

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We develop a free surface tracking solver for numerical simulation of unsteady irrotational fully non-linear water waves in a freely available open-source computational fluid dynamics toolbox OpenFOAM R -Ext, which is community-driven release of OpenFOAM R . The solver is based on the solution of the Laplacian of the velocity potential with moving free surface. The free surface is tracked by solving the kinematic boundary condition based on the normal flux out of the surface. We also develop the necessary boundary conditions for the realistic wave generation at inlet and the absorption boundary condition at the outlet boundary. To avoid numerical instability, a 5-point smoothing technique is used to smooth the free surface elevation. Solution of Laplace’s equation for the velocity potential, the non-linear free surface boundary conditions, the wave generation and the absorption boundary conditions are all not part of the standard OpenFOAM R distribution. The potential flow solver is able to simulate large amplitude standing and progressive waves. We validate the solver by comparing the numerical results with analytical results for second order standing waves, and progressive waves with experimental results and satisfactory agreement is found.
机译:我们开发了一个自由介绍的源式计算流体动力学工具箱OpenFoam R-Bext中不稳定的无铅完全非线性水波数值模拟的自由曲面跟踪求解器,这是OpenFoam R的社区驱动释放。求解器基于Laplacian的速度电位的溶液,其自由表面移动。通过基于表面的正常通量求解运动边界条件来跟踪自由表面。我们还开发了在进出边界处的入口和吸收边界条件下的现实波产生的必要边界条件。为避免数值不稳定,使用5分平滑技术来平滑自由表面升高。 Laplace的速度电位方程的解决方案,非线性自由表面边界条件,波产生和吸收边界条件都不是标准OpenFoam R分布的一部分。潜在的流动求解器能够模拟大的幅度站和渐进波。我们通过将数值结果与二阶站立波的分析结果进行比较来验证求解器,并发现具有实验结果和令人满意的逐步的渐进波。

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