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Multi-objective topology and size optimization of high-speed vehicle-passenger catamaran structure by genetic algorithm

机译:遗传算法在高速客车双体船结构多目标拓扑与尺寸优化中的应用

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摘要

Ship structural design has become recently an ever more important and difficult task, because it should always take into account several estimation criteria which are a crucial element of shipyard management, as the hull structural strength is one of the most important factors of overall ship safety, and the total cost of structural materials used for the construction of a ship is a significant part of her total construction cost. Simultaneously, a complete definition of the optimal structural design requires a formulation of size-topology-shape-material optimization task unifying the optimization problems from these four areas and giving an effective solution of this problem. So far, a significant progress towards a solution of this problem has not been achieved. An objective of the underlying paper was to develop an evolutionary algorithm for multi-objective optimization of both topology and scantlings of structural elements of large spatial sections of ships. In the paper an evolutionary algorithm where selection takes place based on the scalar objective function is proposed and applied to solve the problem of structural elements weight and cleaned and painted surface area on a high-speed vehicle-passenger catamaran structure with several design variables, such as plate thickness, scantlings of longitudinal stiffeners and transverse frames, and spacing between longitudinal and transversal members. The results of numerical experiments with the use of the developed algorithm are presented. They show that the proposed genetic algorithm can be an efficient multi-objective optimization tool for simultaneous design of the topology and sizing of ship structures.
机译:由于船体结构强度是整个船舶安全的最重要因素之一,因此,船体结构设计最近已成为一项越来越重要且艰巨的任务,因为它应始终考虑到几个评估标准,这是造船厂管理的关键要素。而用于建造船舶的结构材料的总成本占其总建造成本的很大一部分。同时,对最佳结构设计的完整定义要求制定尺寸-拓扑-形状-材料优化任务,以统一这四个方面的优化问题并给出有效解决方案。迄今为止,在解决该问题上尚未取得重大进展。基础论文的目的是开发一种进化算法,用于对船舶大空间区域的拓扑和结构元素的尺寸进行多目标优化。本文提出了一种基于标量目标函数进行选择的进化算法,并将其应用于解决具有多个设计变量的高速客车双体船结构的结构元素重量以及清洁和涂漆表面积的问题。例如板厚,纵向加劲肋和横向框架的尺寸以及纵向构件和横向构件之间的间距。提出了使用改进算法进行数值实验的结果。他们表明,所提出的遗传算法可以作为一种高效的多目标优化工具,用于同时设计拓扑和确定船舶结构的尺寸。

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