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首页> 外文期刊>Journal of Hydroinformatics >Case study of the cascading effects on critical infrastructure in Torbay coastal/pluvial flooding with climate change and 3D visualisation
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Case study of the cascading effects on critical infrastructure in Torbay coastal/pluvial flooding with climate change and 3D visualisation

机译:借助气候变化和3D可视化技术对Torbay沿海/小洪水中级联影响关键基础设施的案例研究

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摘要

Critical infrastructures (CIs) are commonly designed, built and maintained based on rigorous standards in order to withstand the climate and weather-related pressures. However, shifts in climate characteristics may result in increases of the magnitude and frequency of potential risks, or expose specific CI to new or increased risks not previously considered. As vital components of the normal functioning of modern societies, their resilience encompasses the operational elements, their structural integrity and the capacity to maximise business output under climate stressors. In this work, we apply an integrated and participatory methodological approach to assess the risk and enhance the resilience of interconnected CIs to urban flooding under climate change. The proposed methodology has been applied to an extended case study in Torbay to extend previous works, which seeks to protect coastal communities from future events through using the proposed methodology to justify future investment in coastal defences, as a part of the validation of EU-CIRCLE projects developed methodologies.
机译:关键基础设施(CI)通常根据严格的标准进行设计,构建和维护,以承受与气候和天气相关的压力。但是,气候特征的变化可能导致潜在风险的幅度和频率增加,或使特定的CI暴露于以前未曾考虑过的新风险或增加的风险中。作为现代社会正常运转的重要组成部分,它们的适应力包括运营要素,其结构完整性以及在气候压力因素下最大化业务产出的能力。在这项工作中,我们采用一种综合的,参与性的方法论方法来评估风险,并增强相互关联的配置项对气候变化下城市洪水的抵御能力。拟议的方法已应用于Torbay的扩展案例研究中,以扩展以前的工作,该工作旨在通过使用拟议的方法来证明未来对沿海防御的投资是合理的,从而保护沿海社区免受未来事件的影响,这是对EU-CIRCLE进行验证的一部分项目开发了方法论。

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