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Numerical modeling of multi-directional irregular waves incorporating 2-D numerical wave absorber and subgrid turbulence

机译:二维数值波吸收器和亚网格湍流的多向不规则波数值模拟

摘要

In this paper, a finite difference scheme with an efficient 2-D numerical wave absorber for solving the extended Boussinesq equations as derived by Nwogu (Nwogu, O., 1993. Alternative form of Boussinesq equations for nearshore wave propagation. J. Waterway, Port, Coastal and Ocean Engineering, ASCE 119, 618-638) is proposed. The alternate direction iterative method combined with an efficient predictor-corrector scheme are adopted for the numerical solution of the governing differential equations. To parameterize the contribution of unresolved small-scale motions, the philosophy of the large eddy simulation is applied on the horizontal plane. The proposed method is verified by two test cases where experimental data are available for comparison. The first case is wave diffraction around a semi-infinite breakwater studied by Briggs et al. (Briggs, M.J., Thompson, E.F., Vincent, C.L., 1995. Wave diffraction around breakwater. Journal of Waterway, Port, Coastal, and Ocean Engineering, ASCE 121, 23-35). The other case is wave concentration by a navigation channel as reported by Yu et al. (Yu, Y.-X., Liu, S.-X., Li, Y.S., Wai, O.W.H., 2000. Refraction and diffraction of random waves through breakwater. Ocean Engineering 27, 489-509). Numerical results agree very well with the corresponding experimental data in both cases.
机译:本文中,由Nwogu(Nwogu,O.,1993.近岸波传播的Boussinesq方程的另一种形式。),一种具有有效二维数值波吸收器的有限差分方案,用于求解扩展的Boussinesq方程。 ,海岸和海洋工程,ASCE 119,618-638)。控制微分方程的数值解采用了交替方向迭代法和有效的预测-校正器方案。为了参数化未解决的小尺度运动的贡献,将大涡模拟的原理应用于水平面。所提出的方法通过两个测试案例进行了验证,其中两个实验数据可供比较。第一种情况是Briggs等人研究的半无限防波堤周围的波衍射。 (Briggs,M.J.,Thompson,E.F.,Vincent,C.L.,1995。防波堤周围的波衍射。水路,港口,沿海和海洋工程学报,ASCE 121,23-35)。另一种情况是由Yu等人报道的导航通道的波集中。 (于,Y.-X。,刘,S-X。,李,Y.S。,怀,O.W.H.,2000。通过防波堤的随机波的折射和衍射。海洋工程27,489-509)。两种情况下的数值结果都与相应的实验数据非常吻合。

著录项

  • 作者

    Zhan JM; Li YS; Wai OWH;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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