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Optimum design of concrete cable-stayed bridges

机译:混凝土斜拉桥的优化设计

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摘要

The design of cable-stayed bridges involves a significant number of design variables and design objectives. The concrete cable-stayed bridge optimization is formulated here as a multi-objective optimization problem with objectives of minimum cost, minimum deflections and minimum stresses. A numerical method is developed to obtain the optimum design of such structures. This numerical method includes: structural analysis, sensitivity analysis and optimization. The structural analysis accounts for all the relevant effects (concrete time-dependent effects, construction stages and geometrical nonlinear effects). The structural response to changes in the design variables is achieved by a discrete direct sensitivity analysis procedure, and an entropy-based approach was used for structural optimization. The features and applicability of the proposed method are demonstrated by numerical examples concerning the optimization of a real-sized concrete cable-stayed bridge.
机译:斜拉桥的设计涉及大量的设计变量和设计目标。在这里,混凝土斜拉桥的优化是一个多目标优化问题,其目标是最小成本,最小挠度和最小应力。开发了一种数值方法来获得这种结构的最佳设计。该数值方法包括:结构分析,灵敏度分析和优化。结构分析考虑了所有相关的影响(具体的时变影响,施工阶段和几何非线性影响)。结构对设计变量变化的响应是通过离散的直接灵敏度分析程序实现的,并且基于熵的方法用于结构优化。数值算例验证了所提方法的特点和适用性。

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