Optimization Analysis of the Shape and Position of a Submerged Breakwater for Improving Floating Body Stability

Sanghwan Heo, W. Koo, MooHyun Kim
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Abstract

: Submerged breakwaters can be installed underneath floating structures to reduce the external wave loads acting on the structure. The objective of this study was to establish an optimization analysis framework to determine the corresponding shape and position of the submerged breakwater that can minimize or maximize the external forces acting on the floating structure. A two-dimensional frequency-domain boundary element method (FD-BEM) based on the linear potential theory was developed to perform the hydrodynamic analysis. A metaheuristic algorithm, the advanced particle swarm optimization, was newly coupled to the FD-BEM to perform the optimization analysis. The optimization analysis process was performed by calling FD-BEM for each generation, performing a numerical analysis of the design variables of each particle, and updating the design variables using the collected results. The results of the optimization analysis showed that the height of the submerged breakwater has a significant effect on the surface piercing body and that there is a specific area and position with an optimal value. In this study, the optimal values of the shape and position of a single submerged breakwater were determined and analyzed so that the external force acting on a surface piercing body was minimum or maximum.
优化分析水下防波堤的形状和位置以提高浮体稳定性
:水下防波堤可以安装在浮动结构的下方,以减少作用在浮动结构上的外部波浪载荷。本研究的目的是建立一个优化分析框架,以确定相应的水下防波堤形状和位置,从而使作用在浮动结构上的外力最小化或最大化。研究开发了一种基于线性势理论的二维频域边界元方法(FD-BEM)来进行水动力分析。在 FD-BEM 中新加入了一种元启发式算法--高级粒子群优化算法,以进行优化分析。优化分析过程是通过调用每一代 FD-BEM,对每个粒子的设计变量进行数值分析,并利用收集到的结果更新设计变量。优化分析的结果表明,水下防波堤的高度对水面穿孔体有显著影响,且存在特定区域和位置的最优值。本研究确定并分析了单个水下防波堤形状和位置的最佳值,从而使作用在水面穿孔体上的外力最小或最大。
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