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首页> 外文期刊>Journal of Infrastructure Systems >Sustainability of Natural Hazard Risk Mitigation: Life Cycle Analysis of Environmental Indicators for Bridge Infrastructure
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Sustainability of Natural Hazard Risk Mitigation: Life Cycle Analysis of Environmental Indicators for Bridge Infrastructure

机译:减轻自然灾害风险的可持续性:桥梁基础设施环境指标的生命周期分析

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摘要

The performance of structures and infrastructure under natural hazards can have a significant impact on the sustainability of the system, often characterized in terms of environmental, economic, or social indicators of performance. This paper commences with a brief review of the relation of natural hazard performance to sustainability and an assessment of bridge infrastructure sustainability with an emphasis on environmental indicators. A framework for life cycle sustainability analysis (LCS-A) is then posed that elucidates the role of natural hazard risks when evaluating sustainable bridge performance using risk-based indicators of environmental sustainability, including embodied energy and carbon dioxide (CO_2) emissions. Its application provides insight on the sustainability of mitigating damage from natural hazards through retrofitting deficient structures, considering uncertainty in the hazard occurrence, structural performance, and repair or reconstruction actions that affect energy expenditure and emissions. A case study is presented to evaluate indicators of environmental sustainability for individual bridges and for a regional portfolio of bridges susceptible to aging and seismic hazards. The results show the significant impact that retrofit can have on reducing the expected value of emissions and embodied energy from lifetime hazard exposure.
机译:自然灾害下的结构和基础设施的性能可能会对系统的可持续性产生重大影响,通常以环境,经济或社会绩效指标来表征。本文首先简要回顾了自然灾害绩效与可持续性之间的关系,并评估了桥梁基础设施的可持续性,重点是环境指标。然后提出了生命周期可持续性分析框架(LCS-A),该框架阐明了使用基于风险的环境可持续性指标(包括具体的能源和二氧化碳(CO_2)排放)评估可持续桥梁性能时,自然灾害风险的作用。它的应用程序提供了关于通过改造缺陷结构来减轻自然灾害造成的损害的可持续性的见解,同时考虑了危险发生,结构性能以及影响能源消耗和排放的修复或重建行动的不确定性。提出了一个案例研究,以评估单个桥梁以及易受老化和地震危害的桥梁区域组合的环境可持续性指标。结果表明,翻新对降低预期的排放量和生命危险暴露所产生的能量具有重大影响。

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