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The permeability parameter of curtain-wall breakwaters

机译:幕墙防波堤的渗透系数

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摘要

A numerical model has been developed that can predict the interaction of regular waves on a single curtain-wall pile breakwater (CPB).The model is based on an eigenfunction expansion method and utilises a boundary condition close by the vertical piles that accounts for energy dissipation. Energy dissipation is modelled through the boundary condition via a permeability parameter This parameter is a complex constant, so that the real part of it corresponds to the frictional resistance of the breakwater and the imaginary part is associated with the inertial resistance of the breakwater.The permeability parameter can be calculated by two different methods: one is advantageous because all the frictional and inertial related variables are known; the other requires the frictional resistance to be calculated by comparing the mathematical and experimental results. The purpose of this study is to compare the accuracy of the two methods in the case of CPBs, and express the frictional resistance of the CPBs as a function or a constant for the second method. Modelling is validated by comparison with previous experimental studies. The appropriate range for the porosity and relative draft of the breakwater is discussed and it is suggested that CPBs can operate both effectively and efficiently in the draft range 0.15-0.75, although to achieve maximum energy, the porosity between 0.15-0.2 is recommended.
机译:已经建立了一个可以预测单个幕墙桩防波堤(CPB)上规则波相互作用的数值模型,该模型基于本征函数展开方法,并利用了垂直桩附近的边界条件来解决能量耗散问题。能量耗散是通过渗透率参数通过边界条件建模的。该参数是一个复数常数,因此它的实部对应于防波堤的摩擦阻力,而虚部与防波堤的惯性阻力相关。可以通过两种不同的方法来计算参数:一种是有利的,因为所有与摩擦和惯性有关的变量都是已知的;另一个要求通过比较数学和实验结果来计算摩擦阻力。本研究的目的是比较CPB情况下这两种方法的准确性,并将CPB的摩擦阻力表示为第二种方法的函数或常数。通过与先前的实验研究进行比较来验证建模。讨论了防波堤的孔隙率和相对吃水的合适范围,建议CPB可以在0.15-0.75的吃水范围内有效且高效地运行,尽管要获得最大能量,建议孔隙率在0.15-0.2之间。

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