Wave Diffraction on Arrays of Vertical Truncated Cylindrical Bodies

S. Mavrakos, I. Chatjigeorgiou, D. Konispoliatis
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引用次数: 1

Abstract

Offshore Wave Energy Converter (WEC) farms are widely deployed as regards the individual isolated devices aiming at maximum wave energy absorption and facilitating installation and power transmission. This paper summarizes the theory behind the hydrodynamic interactions of diffracted waves by a large array of vertical cylinders. The latter exhibits some remarkable hydrodynamic interference effects — near resonant modes — in waves causing large loads in adjacent elements of the array. Numerical results concerning the exciting wave loads for a variety of different array configurations of truncated and bottomless cylinders are presented and the free surface elevation around the elements of the array is evaluated pointing out the near trapped modes.
垂直截断圆柱体阵列上的波衍射
离岸波浪能转换器(WEC)农场广泛采用独立的隔离装置,旨在最大限度地吸收波浪能,方便安装和电力传输。本文综述了大圆柱阵列绕射波的水动力相互作用理论。后者表现出一些显著的水动力干涉效应-近共振模式-在波浪中引起阵列相邻单元的大载荷。本文给出了截断和无底圆柱不同排列形式下激波载荷的数值计算结果,并计算了阵列单元周围的自由面高程,指出了近困模态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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