Approximate Optimization Based on Meta-model for Weight Minimization Design of Ocean Automatic Salt Collector

S. Yong
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引用次数: 1

Abstract

In this paper, the meta-model based approximate optimization was carried out for the structure design of an ocean automatic salt collector in order to minimize the structure weight. The structural analysis was performed by using the finite element method to evaluate the strength performance of the ocean automatic salt collector in its initial design. In the structural analysis, it was evaluated the strength performance of the design load conditions. The optimum design problem was formulated so that design variables of main structure thickness would be determined by minimizing the structure weight subject to strength performance constraints. The meta-models used in the approximate optimization were the response surface method, Kriging model, and Chebyshev orthogonal polynomials. Regarding to the numerical characteristics, the solution results from approximate optimization techniques were compared to the results of non-approximate optimization. The Chebyshev orthogonal polynomials among the meta-models used in the approximate optimization showed the most appropriate optimum design results for the structure design of the ocean automatic salt collector.
基于元模型的海洋自动集盐器重量最小化设计近似优化
为了使海洋自动集盐器的结构重量最小,对其结构进行了基于元模型的近似优化设计。采用有限元法对海洋自动集盐器在初始设计阶段的强度性能进行了结构分析。在结构分析中,对设计荷载条件下的强度性能进行了评价。提出了在强度性能约束下,以结构自重最小为目标确定主结构厚度设计变量的优化设计问题。近似优化采用的元模型为响应面法、Kriging模型和Chebyshev正交多项式。针对数值特性,将近似优化方法的求解结果与非近似优化方法的求解结果进行了比较。采用Chebyshev正交多项式进行近似优化,得到了海洋自动集盐器结构设计最合适的优化设计结果。
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