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Sustainability and climate resilience metrics and trade-offs in transport infrastructure asset recovery

机译:交通基础设施资产回收中的可持续性和气候适应力指标和权衡

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Climate change exacerbates natural hazards and continuously challenges the performance of critical infrastructure. Thus, climate resilience and sustainable adaptation of infrastructure are of paramount importance. This paper puts forward a novel framework and metrics for optimising sustainability (Greenhouse Gas emissions - GHG), climate resilience (restoration time), and cost. The framework aims to facilitate decision-making by operators and stakeholders and communicate actionable trade-offs between these principles. It describes approaches for quantifying ex-ante adaptation and ex-post recovery from the lenses of sustainability and resilience using relevant metrics. This paper concludes with an application of the framework on a bridge, where normalised metrics are integrated into one unique index (I_(SRC)), which can be used in the recovery prioritisation for portfolios of similar assets. The optimisation program includes a bridge recovery, while reducing GHG emissions. The impact of climate change on the sustainability and resilience indexes is examined and the results show how the optimum solutions are adversely affected by different climate projections. In all scenarios examined, more sustainable solutions leading to reduced GHG emissions (tCO2e) are the optimum solutions when weighing resilience and cost. Based on the case study analysed in this paper, the low carbon restoration strategy resulted in up to 50% higher I_(SRC), which can justify investments for low GHG adaptation strategies in transport assets.
机译:气候变化加剧了自然灾害,并不断挑战关键基础设施的性能。因此,气候适应力和基础设施的可持续适应至关重要。本文提出了一个新的框架和指标,用于优化可持续性(温室气体排放 - GHG)、气候适应力(恢复时间)和成本。该框架旨在促进运营商和利益相关者的决策,并在这些原则之间传达可操作的权衡。它描述了使用相关指标从可持续性和复原力的角度量化事前适应和事后恢复的方法。本文最后将该框架应用于桥梁,其中标准化指标被整合到一个独特的指数(I_(SRC))中,该指数可用于类似资产投资组合的恢复优先级。优化计划包括桥梁回收,同时减少温室气体排放。研究了气候变化对可持续性和韧性指数的影响,结果显示了不同气候预测如何对最佳解决方案产生不利影响。在所研究的所有情景中,在权衡弹性和成本时,导致温室气体排放 (tCO2e) 的更可持续的解决方案是最佳解决方案。基于本文分析的案例研究,低碳恢复策略使I_(SRC)提高了50%,这可以证明对交通资产的低温室气体适应策略的投资是合理的。

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