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Embodied Energy Optimization of Prestressed Concrete Slab Bridge Decks

机译:预应力混凝土板桥桥面的实现能量优化

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This paper presents one approach to the analysis and design of post-tensioned cast-in-place concrete slab bridge decks. A Simulated Annealing algorithm is applied to two objective functions: (i) the economic cost; and (ii) the embodied energy at different stages of production materials, transport, and construction. The problem involved 33 discrete design variables: five geometrical ones dealing with the thickness of the slab, the inner and exterior web width, and two flange thicknesses; concrete type; prestressing cables, and 26 variables for the reinforcement set-up. The comparison of the results obtained shows two different optimum families, which indicates that the traditional criteria of economic optimization leads to inefficient designs considering the embodied energy. The results indicate that the objectives are not competing functions, and that optimum energy designs are close to the optimum cost designs. The analysis also showed that the savings of each kW h of energy consumed carries an extra cost of 0.49€. The best cost solution presents 5.3% more embodied energy. The best energy solution is 9.7% more expensive than that of minor cost. In addition, the results have showed that the best cost solutions are not the best energy solutions.
机译:本文提出了一种分析和设计后张预应力现浇混凝土板桥面的方法。将模拟退火算法应用于两个目标函数:(i)经济成本; (ii)生产材料,运输和构造的不同阶段所包含的能量。该问题涉及33个离散的设计变量:五个几何变量涉及板坯的厚度,内腹板和外腹板的宽度以及两个法兰厚度。具体类型;预应力电缆,以及用于钢筋设置的26个变量。所得结果的比较显示了两个不同的最佳族,这表明经济优化的传统标准导致考虑到所体现的能量的设计效率低下。结果表明,这些目标不是相互竞争的功能,并且最佳能源设计已接近最佳成本设计。分析还表明,每千瓦时能耗的节省将带来0.49欧元的额外成本。最佳成本解决方案可将能耗提高5.3%。最佳的能源解决方案比小成本的解决方案贵9.7%。此外,结果表明,最佳成本解决方案不是最佳能源解决方案。

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