引力波与透水防波堤的相互作用

I. Selezov, V. Voskoboinick, O. Voskoboinyk, A. G. Kharchenko, Andriy V. Voskoboinick
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引用次数: 0

摘要

基于位势理论,提出了一种计算垂直透水防波堤作用下引力波参数的方法。流体的波动用满足拉普拉斯方程的速度势来描述。确定了波面形状和速度矢量的分量。对垂壁渗透率对波浪能吸附的影响进行了数值分析。分析了表面引力波在具有垂直可渗透障碍物的通道中的线性传播问题。根据能量守恒定律,给出了反射波系数与透射波系数的关系。通过实验研究,确定了波浪与透水型海岸防护结构水动力相互作用的特征。实验是在实验室的波浪通道中进行的,采用了不同渗透率的垂直槽壁模型。可视化和仪器研究显示了波场与透水防波堤相互作用的特征,以及通过防波堤形成的反射波和透射波。研究结果表明,垂直开槽墙对波场的影响很大,根据其渗透率的不同,会产生反射波和穿过防波堤的波,波浪能的耗散也很大。给出了波浪的反射系数和透射系数以及波浪能量的耗散系数随槽式防波堤的渗透性和水域相对深度的变化规律。结果表明,随着防波堤渗透性的增大,波浪反射系数减小,波浪透射系数增大。结果表明,波的反射系数随相对深度的增加而增大,波的传播系数随相对深度的增加而减小。波浪能耗散系数随着波长相对深度的增加而增大,防波堤的渗透性越好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interaction of gravitational waves with permeable breakwater
A method for calculating the parameters of gravitational waves that interact with vertical permeable breakwaters, based on potential theory, has been developed and presented. The wave motion of a fluid was described by the velocity potential that satisfies the Laplace equation. The shape of the wave surface and the components of the velocity vector were determined. Numerical analysis of the influence of permeability of the vertical wall on wave energy adsorption was carried out. The propagation of surface gravitational waves in the linear formulation of problems in a channel with a vertical permeable obstacle was analyzed. The dependence of the wave reflection coefficient as a function of the wave transmission coefficient in accordance with the law of energy conservation was given. Experimental studies have been conducted to determine the features of the hydrodynamic interaction of sea waves and coastal protection structures of the permeable type. The experiments were performed in the laboratory in a wave channel with models of vertical slotted walls of different permeability. Visual and instrumental studies have shown the features of the interaction of the wave field with permeable breakwaters, the formation of reflection and transmission waves through the breakwater. It is established that vertical slotted walls, depending on the permeability, significantly affect the wave field, generate reflected waves and waves passing through the breakwater, as well as lead to a significant dissipation of wave energy. The dependences of the reflection and transmission coefficients of the wave, as well as the dissipation coefficient of the wave energy depending on the permeability of the slotted breakwater and the relative depth of the water area were given. It is shown that with increasing permeability of the breakwater the wave reflection coefficient decreased, and the wave transmission coefficient on the contrary increased. It was found that the reflection coefficient of the wave was increased with increasing relative depth, and the coefficient of wave propagation was decreased. The dissipation coefficient of the wave energy had the maximum value, which was observed for greater permeability of the breakwater, when the relative depth compared to the wavelength was increased.
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