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首页> 外文期刊>Proceedings of the Institution of Civil Engineers >Resistance and resilience - paradigms for critical local infrastructure
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Resistance and resilience - paradigms for critical local infrastructure

机译:抵抗力和弹性-关键本地基础设施的范例

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'Critical infrastructure' generally refers to significant pieces of plant and equipment, such as power stations and motorways. High population densities in cities, and the increasing interconnectedness of the services and supply chains that sustain them, mean local infrastructure is equally important. Local infrastructure must be able to cope with system shocks, whether from natural hazards, terrorism or catastrophic failures. Engineering design plays a major part in achieving this, but shocks will occur that overwhelm even the most conservative design. Local infrastructure must therefore be able to adapt to, and recover from, shocks: it must be resilient. Local infrastructure has evolved with little consideration for resilience of the interconnected system as a whole, whereas resilience has been the subject of much research in many other systems. This paper explores the lessons that local infrastructure can learn from such research by reviewing literature related to resilience of ecological, economic, physical infrastructure, community/social and government systems. A critical analysis highlights the factors affecting resilience and different approaches that need to be taken into account when attempting to model infrastructure at a local scale. The ultimate aim is to provide an evidence base on which to build resilience into various infrastructures and direct future local infrastructure resilience research in an age of austerity.
机译:“关键基础设施”通常是指重要的工厂和设备,例如电站和高速公路。城市中的高人口密度,以及维持城市人口的服务和供应链之间日益紧密的联系,意味着当地的基础设施同样重要。无论是自然灾害,恐怖主义还是灾难性故障,当地基础设施都必须能够应对系统冲击。工程设计在实现这一目标中起着重要作用,但即使最保守的设计,也会受到冲击。因此,本地基础结构必须能够适应冲击并从冲击中恢复:它必须具有弹性。本地基础设施的发展几乎没有考虑互连系统整体的弹性,而弹性已成为许多其他系统研究的主题。本文通过回顾与生态,经济,物质基础设施,社区/社会和政府系统的弹性相关的文献,探索了当地基础设施可以从此类研究中获得的经验教训。关键分析强调了影响弹性的因素,以及在尝试对本地基础架构进行建模时需要考虑的不同方法。最终目的是提供证据,在紧缩时代将弹性建立到各种基础设施中,并指导未来的本地基础设施弹性研究。

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