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Determining Transmission Coefficient of Propagating Solitary Wave over Trapezoidal Breakwater and Parametric Studies on Different Influential Factors

机译:梯形防波堤上孤立波传播系数的确定及不同影响因素的参数研究

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The objective of this study is to numerically investigate transmission coefficient of submerged trapezoidal breakwater of various configurations subjected to solitary waves. Boussinesq equations of Madsen and Sorensen are applied as governing equations for simulation purposes. Discretization of governing equations is accomplished using Galerkin finite element method and Adams-Bashforth-Moulton predictor-corrector method is considered for time integration. In order to obtain transmission coefficients, two gauges are considered before and after the submerged breakwater to record initial and transmitted wave heights, respectively. To examine the effect of configuration of breakwaters on their transmission coefficients, submergence ratio and crest width ratio are defined and analyzed. Different submergence ratios and various crest width ratios are considered. Computed results indicate how transmission coefficient decreases with the increase over different ranges of crest width ratio, for all values of submergence ratio. Furthermore, keeping crest width and submergence ratios constant, solitary waves with higher initial heights are simulated. Results of simulation indicate that transmission coefficient becomes higher for the same breakwater characteristics. Finally, a parametric study is conducted on the effect of side slopes of breakwaters. It is shown that side slopes have strong effect on wave transmission.
机译:这项研究的目的是通过数值研究各种形式的水下梯形防波堤的透射系数,这些系数受到孤立波的影响。出于仿真目的,将Madsen和Sorensen的Boussinesq方程用作控制方程。控制方程的离散化使用Galerkin有限元方法完成,并考虑使用Adams-Bashforth-Moulton预测器-校正器方法进行时间积分。为了获得透射系数,在淹没防波堤之前和之后要考虑两个量规,分别记录初始波高和透射波高。为了检查防波堤的构型对其传播系数的影响,定义并分析了淹没率和波峰宽度比。考虑不同的浸入比和各种波峰宽度比。计算结果表明,对于淹没率的所有值,透射系数如何随波峰宽度比的不同范围的增加而减小。此外,在保持波峰宽度和淹没比恒定的情况下,模拟了具有较高初始高度的孤波。模拟结果表明,对于相同的防波堤特性,其透射系数会更高。最后,对防波堤的边坡影响进行了参数研究。结果表明,边坡对波的传播影响很大。

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