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Evaluation of climate change resilience for Boston's rail rapid transit network

机译:波士顿铁路快速运输网络气候变化的评价

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摘要

Sea level rise (SLR) poses increasing flood risks to coastal cities and infrastructure. We propose a general framework of engineering resilience for infrastructure systems in the context of climate change and illustrate its application for the assessment of SLR impacts on the rail rapid transit network in Boston. Within this framework, projected coastal flood events are treated as exogenous exposure events, which interact with both physical and topological endogenous network characteristics. We consider contextual aspects of resilience by assigning relative importance to links based on passenger flows. Resilience is computed assuming a linear recovery model, neglecting recovery strategies. Using a reference 1-100 year coastal flood event we show decreasing resilience of the rail transit network as projected SLR increases. The proposed framework can be readily extended to consider more sophisticated performance models, recovery strategies, other perturbation events, and additional contextual factors, such as equity considerations.
机译:海平面上升(SLR)对沿海城市和基础设施提高了洪水风险。在气候变化的背景下,我们为基础设施系统提出了一般的工程恢复框架,并说明了其在波士顿轨道快速交通网络上评估SLR影响的申请。在此框架内,预计的沿海洪水事件被视为外源性暴露事件,其与物理和拓扑内源性网络特征相互作用。我们通过分配基于乘客流的链接来考虑弹性的上下文方面。假设线性恢复模型,忽略恢复策略,计算弹性。使用参考1-100年的沿海洪水事件,我们表明,随着预计的单反增加,我们显示了轨道交通网络的恢复力。拟议的框架可以很容易地扩展,以考虑更复杂的性能模型,恢复策略,其他扰动事件以及额外的上下文因素,例如股权考虑因素。

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