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Analysis of Wave Action Through Multiple Submerged Porous Structures

机译:多个淹没多孔结构的波浪作用分析

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摘要

Wave interaction with multiple bottom-standing rectangular porous structures of different structural parameters is numerically modeled using the multidomain boundary element method and the matched eigenfunction expansion method, while assuming linear water wave theory. The sensitivity of wave reflection and transmission to the wave and structural parameters is analyzed with the objective to maximize wave energy attenuation. Different configurations of multiple structures are tested for maximizing the efficiency of dissipation. Furthermore, wave trapping by multiple porous structures near a sloping rigid wall is studied. Bragg resonance is observed in the case of wave scattering by multiple structures irrespective of wave and structural parameters and is found as proportional to the number of structures deployed. In addition, the study reveals that in the presence of multiple structures, due to more wave energy dissipation, wave transmission in the lee side of the structures is reduced significantly when compared with that observed for a single structure.
机译:在假设线性水波理论的前提下,使用多域边界元法和匹配的本征函数展开法,对具有不同结构参数的多个底部矩形多孔结构的波相互作用进行了数值模拟。分析了波浪反射和透射对波浪和结构参数的敏感性,目的是使波浪能量衰减最大化。测试了多种结构的不同配置,以最大程度地提高散热效率。此外,研究了在倾斜的刚性壁附近通过多个多孔结构捕获的波。在由多个结构进行波散射的情况下,无论波和结构参数如何,都可以观察到布拉格共振,并且发现布拉格共振与部署的结构数量成比例。此外,研究表明,在存在多个结构的情况下,由于更多的波能量耗散,与在单个结构中观察到的相比,在结构的背风侧的波传输显着降低。

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