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Design of prestressed concrete precast pedestrian bridges by heuristic optimization

机译:预应力混凝土预制人行桥的启发式优化设计

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This paper deals with the economic optimization of prestressed concrete precast pedestrian bridges typically used in public works construction. These bridges are made of a precast concrete beam that integrates an upper reinforced concrete slab for the pedestrian traffic. The beam has a U-shape cross-section. Typical span lengths range from 20 to 40 m and the width ranges from 3.00 to 6.00 m. The study shows the efficiency of heuristic optimization by the simulated annealing (SA) and the threshold accepting (TA) algorithms. The evaluation of solutions follows the Spanish code for structural concrete. Stress resultants and envelopes of these structures are computed by direct calculation. Design loads are in accordance to the national IAP code for road bridges. The algorithms are applied to a typical pedestrian bridge of 40 m of span length and 6.00 m of width. This example has 59 discrete design variables for the geometry of the beam and the slab, materials in the two elements and active and passive reinforcement. The evaluation module includes the limit states that are commonly checked in design: flexure, shear, deflections, etc. The application of the SA and TA algorithms requires the calibration of the initial temperature and threshold, the number of variables modified in each iteration, the length of the Markov chains and the reducing coefficient. Each heuristic is run nine times so as to obtain statistical information about the minimum, average and deviation of the results. Best result has a cost of 38,317 € for the SA algorithm and 38,713 € for the TA algorithm. Finally, solutions and run times indicate that heuristic optimization is a forthcoming option for the design of real prestressed structures.
机译:本文讨论了通常用于公共工程施工中的预应力混凝土预制人行桥的经济优化。这些桥梁由预制混凝土梁制成,该混凝土梁结合了用于行人交通的上部钢筋混凝土板。该梁具有U形横截面。典型的跨度长度为20至40 m,宽度为3.00至6.00 m。研究显示了通过模拟退火(SA)和阈值接受(TA)算法进行启发式优化的效率。解决方案的评估遵循西班牙混凝土结构规范。通过直接计算可以计算出这些结构的应力合力和包络线。设计载荷符合国家IAP公路桥梁规范。该算法适用于跨度为40 m,宽度为6.00 m的典型人行天桥。此示例具有59个离散的设计变量,分别用于梁和楼板的几何形状,两个元素中的材料以及主动和被动钢筋。评估模块包括设计中通常检查的极限状态:弯曲,剪切,挠曲等。SA和TA算法的应用要求校准初始温度和阈值,每次迭代中修改的变量数量,马尔可夫链的长度和归约系数。每种启发式算法都会运行九次,以获取有关结果的最小值,平均值和偏差的统计信息。最好的结果是,SA算法的成本为38,317€,TA算法的成本为38,713€。最后,解决方案和运行时间表明,启发式优化是设计实际预应力结构的一个即将来临的选项。

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