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评估从集中式到分散式供水解决方案转变对现有基础设施的影响--利用 VIBe 进行综合城市规模分析。

Assessing the impact of transitions from centralised to decentralised water solutions on existing infrastructures--integrated city-scale analysis with VIBe.

机构信息

Unit of Environmental Engineering, Institute of Infrastructure, University of Innsbruck, Technikerstr. 13, 6020 Innsbruck,Austria.

出版信息

Water Res. 2013 Dec 15;47(20):7251-63. doi: 10.1016/j.watres.2013.10.038. Epub 2013 Oct 22.

Abstract

Traditional urban water management relies on central organised infrastructure, the most important being the drainage network and the water distribution network. To meet upcoming challenges such as climate change, the rapid growth and shrinking of cities and water scarcity, water infrastructure needs to be more flexible, adaptable and sustainable (e.g., sustainable urban drainage systems, SUDS; water sensitive urban design, WSUD; low impact development, LID; best management practice, BMP). The common feature of all solutions is the push from a central solution to a decentralised solution in urban water management. This approach opens up a variety of technical and socio-economic issues, but until now, a comprehensive assessment of the impact has not been made. This absence is most likely attributable to the lack of case studies, and the availability of adequate models is usually limited because of the time- and cost-intensive preparation phase. Thus, the results of the analysis are based on a few cases and can hardly be transferred to other boundary conditions. VIBe (Virtual Infrastructure Benchmarking) is a tool for the stochastic generation of urban water systems at the city scale for case study research. With the generated data sets, an integrated city-scale analysis can be performed. With this approach, we are able to draw conclusions regarding the technical effect of the transition from existing central to decentralised urban water systems. In addition, it is shown how virtual data sets can assist with the model building process. A simple model to predict the shear stress performance due to changes in dry weather flow production is developed and tested.

摘要

传统的城市水务管理依赖于中央组织的基础设施,其中最重要的是排水网络和配水网络。为了应对即将到来的挑战,如气候变化、城市的快速增长和收缩以及水资源短缺,水基础设施需要更加灵活、适应和可持续(例如,可持续城市排水系统,SUDS;水敏性城市设计,WSUD;低影响开发,LID;最佳管理实践,BMP)。所有解决方案的共同特点是推动城市水务管理从集中式解决方案向分散式解决方案转变。这种方法带来了各种技术和社会经济问题,但到目前为止,还没有对其影响进行全面评估。这种缺失很可能是由于缺乏案例研究,并且由于准备阶段耗时且成本高昂,通常可用的模型数量有限。因此,分析结果基于少数案例,几乎不可能推广到其他边界条件。VIBe(虚拟基础设施基准测试)是一种用于在城市规模上对城市水系统进行随机生成的工具,适用于案例研究。通过生成的数据集,可以进行综合的城市规模分析。通过这种方法,我们能够得出关于从现有集中式到分散式城市水系统转变的技术效果的结论。此外,还展示了虚拟数据集如何帮助模型构建过程。开发并测试了一个简单的模型,用于预测由于旱季流量产生变化而导致的剪切应力性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c1b/3857599/d1c70a19ab8e/fx1.jpg

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