首页> 外文期刊>Journal of Waterway, Port, Coastal and Ocean Engineering >Dual Boundary Element Analysis of Normal Incident Wave Passing a Thin Submerged Breakwater with Rigid, Absorbing, and Permeable Boundaries
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Dual Boundary Element Analysis of Normal Incident Wave Passing a Thin Submerged Breakwater with Rigid, Absorbing, and Permeable Boundaries

机译:正入射波穿过具有刚性,吸收性和渗透性边界的薄型水下防波堤的双重边界元分析

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In this paper, the dual integral formulation is derived for solving the scattering problem of normal incident wave passing a thin vertical and inclined barrier with rigid boundary condition which is descending from the water surface to a depth. Absorbing and porous boundary conditions are both considered. The breakwater thickness is assumed to be zero since it is negligible in comparison with the water depth and the wavelength of the incident wave. Although the multidomain boundary element method (BEM) can solve boundary value problems with degenerate boundaries by dividing the interesting domain into two subdomains, the hypersingular formulation provides the key to solve the problem more efficiently in a single domain. To demonstrate the effects of the breakwater with rigid, absorbing, and porous boundary conditions for the energy dissipation by the barrier, the transmission and reflection coefficients of the scattering problem are determined by the developed dual BEM program. In addition, the results are obtained for the cases of wave scattering by the barrier with zero thickness in constant water depth and are compared with the analytical solutions, the multidomain BEM solution, and the experimental data.
机译:本文采用对偶积分公式来解决法向入射波通过具有刚性边界条件的薄的垂直倾斜壁障的散射问题,该刚性边界条件从水面下降到深度。吸收条件和多孔边界条件都被考虑。防波堤的厚度被假定为零,因为与水深和入射波的波长相比可以忽略不计。尽管多域边界元方法(BEM)可以通过将感兴趣的域划分为两个子域来解决边界退化的边界值问题,但是超奇异公式提供了在单个域中更有效地解决问题的关键。为了证明在刚性,吸收性和多孔性边界条件下,防波堤对障碍物能量消散的影响,散射问题的透射系数和反射系数由开发的双重BEM程序确定。此外,对于在恒定水深下厚度为零的障碍物进行波散射的情况,可以获得结果,并将其与分析解决方案,多域BEM解决方案和实验数据进行比较。

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