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Higher-order diffraction forces on vertical circular cylinders by using a three-dimensional fully-nonlinear potential numerical wave tank

机译:通过使用三维全非线性潜在数值波箱,垂直圆柱体上的高阶衍射力

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摘要

The aim of this study is to evaluate higher-order diffraction forces on vertical circular cylinders by using an author-developed three-dimensional fully-nonlinear numerical wave tank (NWT). The nonlinear NWT is based on the potential theory, boundary element method, and mixed Eulerian Lagrangian (MEL) approach. The acceleration-potential method is used to calculate the hy-drodynamic pressure accurately. The artificial damping zone is adopted to prevent reflected waves from bodies and side walls. The least square gradient reconstruction method and the thin plate spline method are applied to evaluate the spatial derivatives of physical quantities and updated locations of interpolation points. The third-order stokes monochromatic or bichromatic waves are inputted as incident-wave boundary condition. From the nonlinear NWT simulations with FFT, first-order, second-order, and third-order diffraction forces are simultaneously calculated and the results are systematically compared with published experimental and perturbation-based numerical results. The sensitivity of the nonlinear NWT results with the respective orders of Stokes monochromatic or bichromatic input waves is also investigated. The increase of third-order sum-frequency force in shallow water long wave is noticed.
机译:本研究的目的是通过使用作者开发的三维全非线性数字波罐(NWT)来评估垂直圆柱上的高阶衍射力。非线性NWT基于潜在的理论,边界元法和混合欧拉拉格朗日(MEL)方法。加速 - 电位方法用于精确计算Hy-Drodynamic压力。采用人造阻尼区来防止体内和侧壁的反射波。应用最小二乘梯度重建方法和薄板样条方法来评估物理量的空间衍生物和内插点的更新位置。三阶Stokes单色或双色波被输入为入射波边界条件。从非线性NWT模拟与FFT,一阶,二阶和三阶衍射力同时计算,并将结果系统地与已发表的实验和基于扰动的数值结果进行了比较。还研究了非线性NWT结果与各自的斯托克斯单色或双色入波的相应序列的敏感性。注意到浅水长波中的三阶和频率的增加。

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  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1642-1642|共1页
  • 作者

    S.- J. Kim; M.- H. Kim; W. Koo;

  • 作者单位

    Department of Naval Architecture and Ocean Engineering INHA University Incheon South Korea;

    Department of Naval Architecture and Ocean Engineering INHA University Incheon South Korea;

    Department of Naval Architecture and Ocean Engineering INHA University Incheon South Korea;

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  • 正文语种 eng
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