Hydrodynamics of a free-floating cylinder in front of an orthogonal vertical wall

IF 1.4 Q3 ENGINEERING, MARINE Ship Technology Research Pub Date : 2021-10-14 DOI:10.1080/09377255.2021.1990466
D. Konispoliatis, S. Mavrakos
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Abstract

ABSTRACT The paper deals with the analytical evaluation of the linearized exciting wave forces; hydrodynamic coefficients and wave drift forces acting on a free-floating vertical cylindrical body placed in front of a reflecting orthogonal vertical wall. Linear potential theory is assumed, and the associated diffraction and radiation problems are solved in the frequency domain. The hydrodynamic interactions among the body and the adjacent breakwater are taken into account by applying a theoretical model based on the method of images, considering the breakwater as a fully reflecting, bottom mounted and water surface piercing wall of infinite length. The theoretical approach is supplemented by a numerical model considering the orthogonal breakwater as a barrier of finite length. The results of both formulations are compared with the ones corresponding to an isolated cylindrical body demonstrating the amplified scattered and reflected waves at specific frequency ranges originating from the presence of the orthogonal breakwater.
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垂直垂直壁面前自由漂浮圆柱体的流体动力学
本文讨论了线性化激波力的解析计算;水动力系数和波浪漂移力作用于一个自由漂浮的垂直圆柱体放置在一个反射垂直壁前。假设了线性势理论,并在频域上解决了相关的衍射和辐射问题。采用基于图像法的理论模型,将防波堤视为一个无限长的全反射、底装、穿水面的墙体,考虑了船体与相邻防波堤之间的水动力相互作用。将正交防波堤作为有限长度的障壁,在理论方法的基础上建立了数值模型。将这两种公式的结果与孤立圆柱体对应的结果进行了比较,证明了正交防波堤的存在在特定频率范围内产生的放大散射波和反射波。
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来源期刊
Ship Technology Research
Ship Technology Research ENGINEERING, MARINE-
CiteScore
4.90
自引率
4.50%
发文量
10
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