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Environmental Impact Optimization of Reinforced Concrete Slab Frame Bridges

机译:钢筋混凝土板框架桥的环境影响优化

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摘要

The main objective of this research is to integrate environmental impact optimization in the structural design of reinforced concrete slab frame bridges in order to determine the most environmental-friendly design. The case study bridge used in this work was also investigated in a previous paper focusing on the optimization of the investment cost, while the present study focuses on environmental impact optimization and comparing the results of both of these studies. Optimization technique based on the pattern search method was implemented. Moreover, a comprehensive Life Cycle Assessment (LCA) methodology of ReCiPe and two monetary weighting systems were used to convert environmental impacts into monetary costs. The analysis showed that both monetary weighting systems led to the same results. Furthermore, optimization based on environmental impact generated models with thinner construction elements yet of a higher concrete class, while cost optimization by considering extra constructability factors provided thicker sections and easier to construct design. This dissimilarity in the results highlights the importance of combining environmental impact (and its associated environmental cost) and investment cost to find more material-efficient, economical, sustainable and time-effective bridge solutions.
机译:这项研究的主要目的是将环境影响优化纳入钢筋混凝土平板框架桥梁的结构设计中,以确定最环保的设计。在先前的论文中,还研究了这项工作中使用的案例研究桥梁,重点是投资成本的优化,而本研究的重点是环境影响的优化,并比较了这两项研究的结果。实现了基于模式搜索的优化技术。此外,使用了ReCiPe的综合生命周期评估(LCA)方法和两个货币加权系统,将环境影响转化为货币成本。分析表明,两种货币加权系统均得出相同的结果。此外,基于环境影响的优化生成的模型具有更薄的结构元素,但具有更高的混凝土等级,而通过考虑额外的可施工性因素进行的成本优化提供了更厚的截面,并且更易于构建设计。结果的差异突出了将环境影响(及其相关的环境成本)和投资成本相结合以找到更具材料效率,经济性,可持续性和时效性的桥梁解决方案的重要性。

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