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On the design optimization of built-up stiffened steel beams with buckling and frequency constraints

机译:具有屈曲和频率约束的组合加劲钢梁的设计优化

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摘要

The literature on the structural design optimization of steel-plate girders indicates a need for more refined research studies to obtain optimal designs by formulating and solving the design problem that combines structural sizing and shape parameters in one unified, constrained problem. For this purpose, the structural optimization design problem of stiffened steel-plate girders is formulated with specified loading conditions and constraints on strength and serviceability considerations including limits on fundamental frequency and buckling modes. The finite-element method-based model is used to define the objective function and the structural/geometric response functions, while the geometric domain elements are used to systematically perturb the structural shape during the search for an optimal shape of the structure. The mathematical statement of the gradient-based-design problem is solved for an optimal structural size and shape with buckling and frequency constraints in addition to the traditional strength constraints. The numerical results obtained are compared with results obtained from a less formal ad hoc design procedure, and some conclusions are drawn to emphasize the design benefits obtained from solving the design problem for optimal structural size and shape.
机译:有关钢板箱梁结构设计优化的文献表明,需要通过制定和解决将结构尺寸和形状参数组合在一个统一的受约束问题中的设计问题,来进行更精细的研究以获得最优设计。为此,加劲板梁的结构优化设计问题是在规定的载荷条件下考虑强度和可使用性的因素,包括对基本频率和屈曲模式的限制。基于有限元方法的模型用于定义目标函数和结构/几何响应函数,而几何域元素用于在寻找结构的最佳形状时系统地扰动结构形状。解决了基于梯度的设计问题的数学陈述,以获得具有传统屈曲约束和频率约束以及传统强度约束的最佳结构尺寸和形状。将获得的数值结果与通过非正式形式的临时设计程序获得的结果进行比较,得出一些结论以强调通过解决设计问题以获得最佳的结构尺寸和形状而获得的设计收益。

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