Ab'/> Improved HPC method for nonlinear wave tank
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Improved HPC method for nonlinear wave tank

机译:改进的非线性波箱高性能计算方法

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AbstractThe recently developed Harmonic Polynomial Cell (HPC) method has been proved to be a promising choice for solving potential-flow Boundary Value Problem (BVP). In this paper, a flux method is proposed to consistently deal with the Neumann boundary condition of the original HPC method and enhance the accuracy. Moreover, fixed mesh algorithm with free surface immersed is developed to improve the computational efficiency. Finally, a two dimensional (2D) multi-block strategy coupling boundary-fitted mesh and fixed mesh is proposed. It limits the computational costs and preserves the accuracy. A fully nonlinear 2D numerical wave tank is developed using the improved HPC method as a verification.
机译: 摘要 最近开发的谐波多项式单元(HPC)方法已被证明是解决势流边值问题的有前途的选择(BVP)。本文提出了一种通量方法,以一致地处理原始HPC方法的Neumann边界条件,并提高精度。此外,开发了具有自由表面浸没的固定网格算法以提高计算效率。最后,提出了一种将边界拟合网格和固定网格耦合的二维(2D)多块策略。它限制了计算成本并保持了准确性。使用改进的HPC方法开发了一个完全非线性的2D数值波箱。

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