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Spatio-topological network analysis of hydrological infrastructure as a decision support tool for flood mitigation in coastal mega-cities

机译:水文基础设施的时空拓扑网络分析,作为沿海特大城市减灾的决策支持工具

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摘要

Hydrological infrastructure components such as pumps, floodgates, and flood gauges are invaluable assets for mitigating flooding, which threatens millions of lives and damages property worth billions of dollars in coastal mega-cities around the world. By improving the understanding of how these hydrological infrastructure components are both spatially and topologically connected through waterways (rivers, canals, streams, etc.) within coastal mega-cities, more precise decisions can be made regarding the most appropriate hydrological infrastructure components required to mitigate flooding during emergency conditions. This paper explores the use of graph theory to create a spatio-topological model of a real world hydrological infrastructure network for one of the most representative coastal mega-cities-Jakarta, Indonesia. The network is modeled as a directed multigraph, with hydrological infrastructure represented as network nodes and waterways as edges. The article demonstrates how the network model can be used as a real-time decision support tool for responding to flooding events by alerting decision makers to the occurrence of rising water levels in any given area and, suggesting the most appropriate infrastructure components to engage in order to prevent a given area from flooding.
机译:水文基础设施的组成部分,如水泵,防洪闸和水位计,对于缓解洪灾来说是宝贵的资产,洪灾威胁着数百万人的生命,并破坏了全世界沿海大城市价值数十亿美元的财产。通过加深对沿海特大城市中水文基础设施组成部分如何通过水路(河流,运河,溪流等)在空间和拓扑上的联系,可以做出最精确的决策,以决定减轻灾害风险所需的最合适的水文基础设施组成部分在紧急情况下发生洪水。本文探讨了使用图论为印度尼西亚雅加达最具代表性的沿海特大城市之一创建真实世界水文基础设施网络的时空拓扑模型。该网络被建模为有向多重图,水文基础设施表示为网络节点,水路表示为边缘。本文通过警告决策者任何给定区域内水位的上升情况,并建议最合适的基础设施组件,来演示如何将网络模型用作应对洪水事件的实时决策支持工具。防止给定区域洪水泛滥。

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