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Reduction of the wave propagation error of a sigma grid based numerical tank using a vertical spacing based on the constant truncation error

机译:基于恒定截断误差的垂直间隔,减少了Σ基流的数值箱的波传播误差

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Numerical wave models that solve the Laplace equation for the velocity potential with a a-grid in the vertical direction have been proven to be flexible and efficient. However, it is observed that the dispersion relation is sensitive to the variation of the vertical a-grid arrangements. So far, there is no recommended practice to optimise the vertical a-grid for a correct representation of the dispersion relation. In order to reduce the uncertainty of the dispersion relation and optimise the choice of the vertical grid distribution, a new method based on the constant truncation error of the finite difference scheme is presented in this article. The optimised vertical grids estimated by the novel method are applied in the fully nonlinear potential flow model REEF3D::FNPF to provide simulated wave surface elevations, which are compared with the measured time series in the long wave flume at SINTEF Ocean, Trondheim. Several different wave scenarios are considered, including regular waves, bichromatic waves, trichromatic waves as well as irregular waves. The wavemaker motions in the physical flume are used to generate waves in the numerical wave tank of REEF3D::FNPF. The proposed truncation error method is seen to effectively mitigate the dispersion (phase) error in all scenarios and the simulations show high accuracy in comparison with the experimental data.
机译:已经证明,在垂直方向上求解Laplace方程的数值波模型,以垂直方向具有垂直方向的速度电位。然而,观察到分散关系对垂直A-栅格布置的变化敏感。到目前为止,没有推荐的做法是为了优化垂直A-GRID,以获得分散关系的正确表示。为了降低色散关系的不确定性并优化垂直网格分布的选择,本文提出了一种基于有限差分方案的恒定截断误差的新方法。通过新型方法估计的优化垂直网格应用于完全非线性电位流动模型Reef3D :: FNPF,以提供模拟波表面升高,这与Sintef海洋的长波水槽中的测量时间序列进行比较。考虑了几种不同的波形场景,包括常规波,双旋,三色波以及不规则的波。物理水槽中的波浪运动员用于在Reef3D :: FNPF的数值波罐中产生波。看到所提出的截断误差方法是有效地减轻了所有场景中的色散(阶段)误差,并且模拟与实验数据相比显示了高精度。

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