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Integrated hydraulic modelling of water supply and urban drainage networks for assessment of decentralized options

机译:供水和城市排水网络的集成水力模型,用于评估分散的方案

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摘要

The impact of climate change, water scarcity, land use change, population growth and also population shrinking can only be predicted with uncertainties. Especially for assets with a long planning horizon this is a critical part for planning and design. One solution is to make centralized organized water infrastructure with a long-planning horizon resilient and adaptive. For existing centralized infrastructure such a transition would be to increasingly implement decentralized measures. But such a transition can cause severe impacts on existing centralized infrastructure. Low flow conditions in urban drainage systems can cause sediment deposition, and for water supply systems water age problems may occur. This work focuses on city-scale analysis for assessing the impact of such measures. For that a coupled model for integrated city-scale analysis is applied and further developed. In addition, a geographic information system (GIS)-based approach for sensitivity analysis is enhanced and also implemented in that model. The developed approach is applied to assess the water infrastructure of an alpine case study. With the obtained results it is demonstrated how the planning process is enhanced by indicating where and where not to implement decentralized measures in an existing water infrastructure.
机译:气候变化,水资源短缺,土地利用变化,人口增长以及人口减少的影响只能通过不确定性来预测。特别是对于具有较长计划范围的资产,这是计划和设计的关键部分。一种解决方案是使具有长期规划视野的集中式有组织水基础设施具有弹性和适应性。对于现有的集中式基础架构,这种过渡将是越来越多地采取分散措施。但是这种过渡可能会对现有的集中式基础架构造成严重影响。城市排水系统中的低流量条件可能导致沉积物沉积,对于供水系统,可能会出现水龄问题。这项工作侧重于城市规模分析,以评估此类措施的影响。为此,应用并进一步开发了用于综合城市规模分析的耦合模型。此外,基于地理信息系统(GIS)的敏感性分析方法得到了增强,并且在该模型中也得到了实现。所开发的方法用于评估高山案例研究的水基础设施。通过获得的结果,可以表明在现有水利基础设施中何处和何处不执行分散措施,从而如何增强规划过程。

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