利用增强型碰撞体优化算法优化海上夹套平台设计

IF 4 2区 工程技术 Q1 ENGINEERING, CIVIL
Naser Shabakhty , Alireza Asgari Motlagh , Ali Kaveh
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引用次数: 0

摘要

鉴于夹套平台使用的材料数量相当大,对这些结构进行优化一直是人们关心的问题。在海上夹套平台的优化设计中,目标函数需要通过大量复杂耗时的分析进行迭代评估,因此优化过程的计算成本非常高昂。因此,为了降低计算成本,必须研究具有高收敛率的高效优化算法,以实现海上夹套结构这一大型复杂问题的最优解。因此,本研究研究了一种名为 "增强碰撞体优化(ECBO)"的新型元启发式算法在实际茄克平台 SPD19A 设计优化中的应用。优化约束包括构件的应力和屈曲、工作点的水平位移以及连接结构的适当性控制。优化结果随后与遗传算法(GA)优化设计进行比较,以评估 ECBO 算法在海上夹套结构方面的效率。结果表明,ECBO 更有效地优化了夹套,优化率为 15%,而 GA 的优化率为 11%。因此,结果证实了 ECBO 算法具有很高的效率,能有效摆脱局部最优状态,从而获得更好的茄克结构设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal design of offshore jacket platform using enhanced colliding bodies optimization algorithm

Given the considerable volume of materials used in jacket platforms, structural optimization of these structures is always of interest. In the design optimization of offshore jacket platforms, the objective function is iteratively evaluated through a number of complex and time-consuming analyses making the optimization process computationally expensive. To reduce the computational costs, therefore, it is imperative to investigate efficient optimization algorithms with a high convergence rate to achieve optimal solutions for offshore jacket structures as a large-scale and complex problem. Accordingly, this research studies the application of a novel metaheuristic algorithm called Enhanced Colliding Bodies Optimization (ECBO) for the design optimization of a real jacket platform, SPD19A. The optimization constraints comprise stress and buckling in the members, horizontal displacements at the working point, and structural adequacy control of connections. The optimization results are subsequently compared to a design optimized by the Genetic Algorithm (GA), as an example, to evaluate the efficiency of the ECBO algorithm for the offshore jacket structure. The outcomes indicate that ECBO optimizes the jacket more effectively by 15%, while the optimization ratio of GA is 11%. Hence, the results confirm that ECBO has great and favorable efficiency and can potently escape from local optima to reach a better design for the jacket structure.

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来源期刊
Marine Structures
Marine Structures 工程技术-工程:海洋
CiteScore
8.70
自引率
7.70%
发文量
157
审稿时长
6.4 months
期刊介绍: This journal aims to provide a medium for presentation and discussion of the latest developments in research, design, fabrication and in-service experience relating to marine structures, i.e., all structures of steel, concrete, light alloy or composite construction having an interface with the sea, including ships, fixed and mobile offshore platforms, submarine and submersibles, pipelines, subsea systems for shallow and deep ocean operations and coastal structures such as piers.
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