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Resilience of a Transportation Network from a Geotechnical Perspective

机译:从岩土角度看运输网络的弹性

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Climate change, and natural and man-made disasters cause failure of crucial geotechnical components in civil infrastructure systems, which may result in catastrophic damage not only to the civil infrastructure but also to local communities. For example, road embankments provide structural support to transportation infrastructure; thus, they greatly influence the mobility of public to access essential human needs such as food, shelter, work, and medical care. The concept of resilience, which is defined as the ability to absorb, recover from, and adapt to disruptions, introduces a new paradigm to overcome challenges with inevitable disruptive events arising from climate change, natural and man-made disasters. In this paper, a quantitative framework is proposed for evaluating the resilience of geotechnical infrastructure along with consideration of its sustainability. The framework is demonstrated through a hypothetical case study based on a selected road network in the province of Ontario, Canada.
机译:气候变化以及自然和人为灾害导致民用基础设施系统中关键的岩土工程构件失效,不仅可能对民用基础设施而且对当地社区造成灾难性破坏。例如,路堤为交通基础设施提供结构支持;因此,它们极大地影响了公众获取食物,住所,工作和医疗等基本人类需求的流动性。复原力的概念被定义为吸收,从破坏中恢复并适应破坏的能力,它引入了新的范式来克服由于气候变化,自然和人为灾难而不可避免的破坏性事件带来的挑战。在本文中,提出了一个定量框架,用于评估岩土基础设施的复原力并考虑其可持续性。通过基于加拿大安大略省选定道路网络的假设案例研究来演示该框架。

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