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首页> 外文期刊>Journal of structural engineering >Sustainability Metrics for Performance-Based Seismic Bridge Response
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Sustainability Metrics for Performance-Based Seismic Bridge Response

机译:基于性能的地震桥响应的可持续性度量

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摘要

Previous performance-based earthquake engineering investigations on highway bridges focused on repair cost and repair time metrics. These are primarily related to economic life-cycle cost analysis decision-making strategies for evaluating the vulnerability of bridges. However, environmental impacts considered during life-cycle assessment are also of interest. A methodology for quantifying the sustainability of bridge designs using carbon footprint as the performance metric is presented. Point estimates of the carbon footprint, repair cost, and repair time are used to compute resilience of several bridge-ground scenarios. Several multispan reinforced concrete highway overpass bridges in California from previous studies were selected for study because post-earthquake probabilistic repair cost and time data are already available. It is demonstrated that the disaggregation of the structure into performance groups, or components that are repaired together, and the probabilistic methodology previously employed lend themselves to the additional computations for carbon footprint. The performance groups and material quantities that drive the major contributions to carbon footprint as opposed to economic costs are presented.
机译:以前基于性能的公路桥梁地震工程研究主要集中在维修成本和维修时间指标上。这些主要与评估桥梁脆弱性的经济生命周期成本分析决策策略有关。但是,在生命周期评估中考虑的环境影响也很重要。提出了一种使用碳足迹作为性能指标量化桥梁设计可持续性的方法。碳足迹,维修成本和维修时间的点估计用于计算几种桥梁情况的弹性。由于地震后的概率维修成本和时间数据已经存在,因此选择了加利福尼亚先前研究中的几座跨径钢筋混凝土公路立交桥进行研究。结果表明,将结构分解为性能组或一起修复的组件,以及以前使用的概率方法有助于进行碳足迹的其他计算。列出了推动碳足迹(而不是经济成本)主要贡献的性能组和材料数量。

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