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Run-up and Wave Forces on an Array of Vertical Circular Cylinders: Experimental Study on Second-Order Near Trapping

机译:垂直圆柱体阵列上的上升和波浪力:二阶近陷法的实验研究

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This paper summarizes the results of experimental tests conducted at the Danish Hydraulic Institute (DHI) in the framework of the EU-IHP-ARI project "Wave Forces on an Array of Circular Cylinders: Experimental Investigation on the Higher-Order Near Trapping." The aim of this research project was to study in detail the so-called near trapping, and specifically the 2nd-order near trapping. This phenomenon regards diffraction effects on TLP-like structures in waves or, in general, on arrays of vertical cylinders that encircle a portion of free surface (inner domain). The result of the wave-structure interaction is a rather large amplification of the oscillations of the free surface in the inner domain. These magnifications are particularly large at the fluid-body interface with associated, large induced pressures; they show their maximum effect for specific ratios of the column radius a to the incident wavelength λ (diffraction parameter ka) and of the column radius to the distance between the column axis d (a/d parameter). First-order near trapping occurs at the incident wave frequency, while 2nd-order near trapping is a double-frequency phenomenon that is expected to occur when double-frequency component waves exhibit a wavelength comparable to that of linear waves giving 1st-order near trapping. The paper describes the set-up of the experiments and the tests conducted, and finally presents the most meaningful results obtained. The behavior Vs ka of in-line and crosswise forces on the cylinders, of the wave run-up and of the free-surface oscillations at selected locations in the inner domain shows clearly the occurrence of the 2nd-order near trapping phenomenon with notable magnification factors.
机译:本文总结了在丹麦水利学会(DHI)在EU-IHP-ARI项目“一系列圆柱体上的波力:高阶近陷阱的实验研究”框架下进行的实验测试的结果。该研究项目的目的是详细研究所谓的近陷,特别是二阶近陷。这种现象与波中TLP样结构的衍射效应有关,或者通常与环绕一部分自由表面(内域)的垂直圆柱阵列有关。波结构相互作用的结果是内表面自由表面的振荡有相当大的放大。这些放大率在流体界面处特别大,并伴随着较大的感应压力。它们显示出特定的列半径a与入射波长λ之比(衍射参数ka)以及列半径与列轴d之间的距离(a / d参数)的最大影响。一阶近陷发生在入射波频率处,而二阶近陷是一种双频现象,当双频分量波的波长与提供一阶近陷的线性波的波长相当时,预期会发生这种情况。 。本文介绍了实验的设置和进行的测试,最后介绍了获得的最有意义的结果。圆柱上的轴向力和横向力,波上升和内域中选定位置处的自由表面振动的行为Vs ka清楚地显示了二阶近陷现象的发生,并具有明显的放大率因素。

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