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Stress-Based Topology Optimization of Steel-Frame Structures Using Members with Standard Cross Sections: Gradient-Based Approach

机译:使用标准截面构件的钢框架结构基于应力的拓扑优化:基于梯度的方法

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This article presents a computationally efficient methodology for stress-based topology optimization of steel frame structures with cross-sectional properties that are mapped from I-beam sections of a design manual. To account for the natural variability of the data, this mapping is achieved via quantile regression to derive continuous relationships between cross-sectional area (the design variable) and other section properties. These relationships are used for deriving the gradient of structural performance, which allows using computationally efficient gradient-based optimization schemes. Three frame structures are designed using the proposed algorithm, the resulting designs are compared with traditional compliance-based topology optimization algorithms, and changes in the designs are discussed. A comparison of stress distribution within the designed structures verified the effectiveness of the proposed methodology. (C) 2017 American Society of Civil Engineers.
机译:本文介绍了一种计算有效的方法,用于对钢框架结构进行基于应力的拓扑优化,该结构具有从设计手册的工字梁截面映射的横截面特性。为了说明数据的自然可变性,此映射是通过分位数回归实现的,以得出横截面积(设计变量)与其他截面特性之间的连续关系。这些关系用于推导结构性能的梯度,从而允许使用基于计算效率的基于梯度的优化方案。使用提出的算法设计了三种框架结构,将所得设计与传统的基于一致性的拓扑优化算法进行了比较,并讨论了设计中的变化。设计结构内应力分布的比较验证了所提出方法的有效性。 (C)2017年美国土木工程师学会。

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