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Ascending Order Constraints Sensitivity Optimal Design Method for Steel Structure

机译:升序约束钢结构的灵敏度优化设计方法

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Traditional structural design method usually adopts the process of trial and error methodology to try to search a "feasible solution" that satisfy the structural design requirements. This process is complex and inefficient, and it can't get the optimal solution. Therefore, integrating computers and advanced optimization ideas into engineering structures to make structural design quickly, accurately, and intelligently is an important in the field of engineering structure design. This paper develops constant incremental sensitivity analysis method that regard sensitivity coefficient as the guide of member cross-sectional optimal design and redistributes structural material under design constraints to improve material efficiency. Based on this analysis method, ascending order constraints sensitivity optimal design method is developed for steel structures. Taking the sensitivity analysis results as a reference standard, the optimal design method can optimize the structural members and minimize the overall structural cost. To verify the accuracy and the optimization ability of the proposed design method, a utility program was developed. At last, a single plane frame structure is exemplified in this paper to discuss the applicability of the optimization design method. The results of program design and manual design are compared and analyzed which confirm the accuracy and effectiveness of the proposed optimal design method.
机译:传统的结构设计方法通常采用试验和误差方法的过程,试图搜索满足结构设计要求的“可行解决方案”。此过程复杂且效率低下,无法获得最佳解决方案。因此,将计算机和高级优化思想集成到工程结构中,以便快速,准确,智能地使结构设计成为工程结构设计领域的重要性。本文开发了恒定增量敏感性分析方法,其将敏感系数视为成员横截面最佳设计的指导,在设计约束下重新分配结构材料,以提高材料效率。基于该分析方法,为钢结构开发了升序约束灵敏度最佳设计方法。将灵敏度分析结果作为参考标准,最佳设计方法可以优化结构构件并最大限度地减少整体结构成本。为了验证所提出的设计方法的准确性和优化能力,开发了一个实用程序。最后,本文举例说明了单个平面帧结构,以探讨优化设计方法的适用性。比较和分析程序设计和手动设计的结果,并确认了所提出的最佳设计方法的准确性和有效性。

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