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Comparing Various Methods for Topology and Shape Optimization of Floating Breakwaters

机译:浮动防波堤的拓扑和形状优化的各种方法比较

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摘要

In this paper, structural optimization of a floating breakwater is addressed through several methods concerning its topology and shape, which constitutes a new application. Three methods are introduced to handle the optimization problem. The first one discusses the shape optimization of a simple predefined geometrical form. The second, studies the topological optimization based on bit array representation of a triangular mesh using genetic algorithms. An attempt to overcome the limitations of bit-array was developed through several steps (new partition element, mesh distinguishing between the representation type and finite element analysis, varying finite element problem size, creating a density vector to control the presence or absence of the boundaries, generating initial population representing void domains instead of void elements). The third method concerns shape optimization, based on a variable number of points creating a structural domain. In contrary to traditional methods where the variable points are indicated by the user, it searches for the optimum number of points to create the optimum shape. Finally, a comparison between these methods for the case of the floating breakwater is discussed.
机译:在本文中,通过几种有关其拓扑结构和形状的方法来解决浮动防波堤的结构优化问题,这构成了一种新的应用。引入了三种方法来处理优化问题。第一个讨论简单的预定义几何形状的形状优化。第二,使用遗传算法研究基于三角形网格的位阵列表示的拓扑优化。试图通过几个步骤来克服位阵列的局限性(新的分区元素,区分表示类型和有限元分析的网格,改变有限元问题的大小,创建密度矢量以控制边界的存在或不存在) ,生成代表无效域而不是无效元素的初始填充)。第三种方法涉及形状优化,基于创建结构域的可变点数。与由用户指示可变点的传统方法相反,它搜索最佳数量的点以创建最佳形状。最后,讨论了在浮动防波堤情况下这些方法之间的比较。

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