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Prestressed Concrete I-Girder Optimization via Genetic Algorithm

机译:通过遗传算法预应力的具体I-GiRder优化

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Prestressed concrete has been gaining popularity in the construction industry because of its many advantages, which include reduced dead load due to less material used and overall cost savings. Nonetheless, a single prestressed concrete I-girder as a structural element in highway bridges is still significantly costly and massive, so optimization can yield a significant amount of cost savings as well as reduced material consumption. In this study, prestressed concrete I-girder optimization was carried out by implementing a genetic algorithm (GA), a method inspired by nature’s evolution and natural selection. This study evaluates a number of aspects of applying a genetic algorithm for optimization of material cost of a prestressed concrete I-girder design. A new method for calculating the fitness value is proposed, which was proven to be essential for the application developed in this study. The best solution that resulted from the optimization process is presented, defined by being the least costly solution while still maintaining compliance with the AASHTO LRFD 2007 design code, which includes ultimate strength, service stresses and deflection, detailing requirements, geometrical feasibility, etc. Lastly, a sensitivity analysis was carried out, discussing the influence of the starting conditions on the output of the optimization process.
机译:预应力混凝土由于其许多优点而在建筑行业中受到普及,这包括由于使用的材料和整体成本节省的材料而降低了死载。尽管如此,作为公路桥梁中的结构元素的单个预应力混凝土I梁仍然显着昂贵和大量,因此优化可以产生大量的成本节省以及降低的材料消耗。在这项研究中,通过实施遗传算法(GA)进行预应力的具体I型梁优化,这是由大自然的演化和自然选择的方法。该研究评估了许多应用遗传算法,以优化预应力混凝土I梁设计的材料成本。提出了一种计算健身值的新方法,这被证明对于本研究开发的应用是必不可少的。提出了由优化过程产生的最佳解决方案,通过成为最低昂贵的解决方案而定义,同时仍保持符合AASHTO LRFD 2007设计代码,包括最终的强度,服务应力和偏转,详细说明要求,几何可行性等。最后,进行敏感性分析,讨论起始条件对优化过程输出的影响。

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