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Optimum design and analysis of U-shape thin-wall aqueduct based on genetic algorithm

机译:基于遗传算法的U形薄壁渡槽优化设计与分析

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摘要

In order to save project investment and reduce project quantity, the optimal design of aqueduct is the main problem in the project therefore, carrying out the optimal design and simulation analysis of U-shaped thin-walled aqueduct has important engineering application value. The paper takes Sha River aqueduct as the research object and adopts the direct search and point checking method of mixed discrete variable optimisation design. It also adopts the structural optimisation design method based on genetic algorithm and gives the optimal design scheme of U-shaped aqueduct. The optimisation design method has the advantages of fast convergence speed, high convergence efficiency and strong global search ability. The results show that, U-shape aqueduct structure is smooth, it has good mechanical properties, and the structural stress is small and can meet the strength requirement. The maximum vertical displacement of the aqueduct occurs in the middle of the span, the vertical displacement value is small, which can meet the requirement of stiffness.
机译:为了节省项目投资和减少项目数量,渡槽的最佳设计是项目中的主要问题,执行U形薄壁渡槽的最佳设计和仿真分析具有重要的工程应用价值。本文以沙河渡槽为研究对象,采用了混合离散变量优化设计的直接搜索和点检查方法。它还采用基于遗传算法的结构优化设计方法,具有U形渡槽的最优设计方案。优化设计方法具有快速收敛速度,高收敛效率和强大的全球搜索能力的优点。结果表明,U形渡槽结构光滑,它具有良好的机械性能,结构应力小,可以满足强度要求。途径的最大垂直位移发生在跨度的中间,垂直位移值小,这可以满足刚度的要求。

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