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Optimum design of FRP bridge deck: an efficient RS-HDMR based approach

机译:FRP桥面板的优化设计:一种基于RS-HDMR的有效方法

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摘要

A novel efficient hybrid method based on random sampling-high dimensional model representations (RS-HDMR) and genetic algorithm coupled with a local unconstrained multivariable minimization function is proposed in this study for optimization of FRP composite web core bridge deck panels. The optimization is performed for lightweight design of FRP composite bridge deck panels based on deflection limit, stresses, buckling and failure criteria and subsequently the representative design curves are developed considering normal as well as skew configurations of FRP bridge decks. Sensitivity analysis is also performed to study the effect of variation in geometry of the bridge deck to its deflection, stress and buckling behaviours. High level of computational efficiency can be achieved without compromising the accuracy of results for optimization of high dimensional systems following the proposed approach.
机译:提出了一种基于随机采样-高维模型表示(RS-HDMR)和遗传算法结合局部无约束多变量最小化函数的新型高效混合方法,以优化FRP复合腹板核心桥面板的设计。根据挠曲极限,应力,屈曲和破坏准则对FRP复合桥面板的轻型设计进行了优化,随后考虑了FRP桥面板的正常和偏斜配置,制定了代表性的设计曲线。还进行了敏感性分析,以研究桥面几何形状的变化对其挠曲,应力和屈曲行为的影响。遵循提出的方法,可以在不损害用于优化高维系统的结果准确性的情况下实现高水平的计算效率。

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