The Optimization Design of the Cross-Sectional Layout of an Umbilical Based on the Hybrid Genetic Algorithm

Xu Yin, Zhixun Yang, D. Shi, Jun Yan, Lifu Wang, Qingzhen Lu, Geng Tian
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引用次数: 1

Abstract

The umbilical which consists of hydraulic tubes, electrical cables and optical cables is a key equipment in the subsea production system. Each components perform different physical properties, so different cross-sections will present different geometrical characteristic, carrying capacities, the cost and the ease of manufacture. Therefore, the cross-sectional layout design of the umbilical is a typical multi-objective optimization problem. A mathematical model of the cross-sectional layout considering geometric and mechanical properties is proposed, and the genetic algorithm is introduced to copy with the optimization model in this paper. A steepest descent operator is embedded into the basic genetic algorithm, while the appropriate fitness function and the selection operator are advanced. The optimization strategy of the cross-sectional layout based on the hybrid genetic algorithm is proposed with the fast convergence and the great probability for global optimization. Finally, the cross-section of an umbilical case is performed to obtain the optimal the cross-sectional layout. The geometric and mechanical performance of results are compared with the initial design, which verify the feasibility of the proposed algorithm.
基于混合遗传算法的脐带缆截面布局优化设计
脐带缆由液压管、电缆、光缆组成,是海底生产系统的关键设备。每个部件具有不同的物理性质,因此不同的截面将呈现不同的几何特征,承载能力,成本和制造的难易程度。因此,脐带缆截面布置设计是一个典型的多目标优化问题。提出了考虑几何性能和力学性能的截面布置数学模型,并引入遗传算法对优化模型进行了复制。在基本遗传算法中嵌入最陡下降算子,并提出合适的适应度函数和选择算子。提出了一种基于混合遗传算法的截面布局优化策略,该策略收敛速度快,全局寻优概率大。最后,对脐带套管进行截面分析,以获得最佳截面布局。结果与初始设计的几何性能和力学性能进行了比较,验证了所提算法的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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