Environmental Change Institute, University of Oxford, South Parks Road, Oxford, UK.
University of Technology Sydney, Institute for Sustainable Futures, Ultimo NSW 2007, Australia.
Risk Anal. 2018 Jan;38(1):134-150. doi: 10.1111/risa.12839. Epub 2017 Jun 30.
Infrastructure adaptation measures provide a practical way to reduce the risk from extreme hydrometeorological hazards, such as floods and windstorms. The benefit of adapting infrastructure assets is evaluated as the reduction in risk relative to the "do nothing" case. However, evaluating the full benefits of risk reduction is challenging because of the complexity of the systems, the scarcity of data, and the uncertainty of future climatic changes. We address this challenge by integrating methods from the study of climate adaptation, infrastructure systems, and complex networks. In doing so, we outline an infrastructure risk assessment that incorporates interdependence, user demands, and potential failure-related economic losses. Individual infrastructure assets are intersected with probabilistic hazard maps to calculate expected annual damages. Protection measure costs are integrated to calculate risk reduction and associated discounted benefits, which are used to explore the business case for investment in adaptation. A demonstration of the methodology is provided for flood protection of major electricity substations in England and Wales. We conclude that the ongoing adaptation program for major electricity assets is highly cost beneficial.
基础设施适应措施为降低洪水和风暴等极端水文气象灾害风险提供了一种实用方法。基础设施资产适应的效益评估为相对于“不作为”情况的风险降低。然而,由于系统的复杂性、数据的稀缺性以及未来气候变化的不确定性,评估风险降低的全部效益具有挑战性。我们通过整合气候适应研究、基础设施系统和复杂网络的方法来应对这一挑战。通过这样做,我们概述了一种基础设施风险评估,该评估纳入了相互依存关系、用户需求和潜在与故障相关的经济损失。将单个基础设施资产与概率性灾害图进行交叉计算,以计算预期的年度损失。整合保护措施成本以计算风险降低和相关贴现效益,用于探索适应投资的商业案例。为英格兰和威尔士的主要电力变电站的防洪提供了方法演示。我们的结论是,正在进行的主要电力资产适应计划具有很高的成本效益。