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Critical infrastructure cascading effects. Disaster resilience assessment for floods affecting city of Cologne and Rhein-Erft-Kreis

机译:关键基础设施级联效果。 影响科隆市和莱茵 - 埃尔特 - 克莱斯的洪水灾害恢复性评估

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At the case study of the city of Cologne and the neighbouring Rhein-Erft-Kreis (a county), selected resilience aspects of critical infrastructure (CI) and cascading effects are analysed concerning major river floods. Using a Geographic Information System, the applicability of the approach is demonstrated using open source software and data, augmented by manual entries. This study demonstrates the feasibility and limitations of analysing lifeline features of interest for disaster risk and emergency management such as roads, bridges and electricity supply. By highlighting interdependencies of emergency services with CI such as roads, cascading effects of interconnected paths are shown. The findings indicate that in an extreme event flood scenario over 2,000 km of roads and eight bridges will be exposed to floods in the area of the rivers Rhine and Erft. This places huge demands on disaster and emergency management institutions and people affected and limits their resiliency.
机译:在科隆市和邻近的莱茵 - 埃尔特 - 克雷斯(A县)的案例研究,分析了主要河流洪水的关键基础设施(CI)和级联效果的选定恢复性方面。 使用地理信息系统,使用开源软件和数据来演示方法的适用性,由手动条目增强。 本研究展示了分析灾害风险和应急管理的生命线特征的可行性和限制,如道路,桥梁和电力供应。 通过突出诸如道路等CI的紧急服务的相互依存性,显示了互连路径的级联效果。 这些研究结果表明,在极端的事件洪水场景中,超过2,000公里的道路和八个桥梁将在河流和埃尔特地区接触洪水。 这使得对灾害和应急管理机构和受影响的人们的巨大要求受到影响并限制了他们的弹性。

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