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Info-Gap robustness pathway method for transitioning of urban drainage systems under deep uncertainties

机译:深度不确定性下城市排水系统转换的信息间隙鲁棒路径方法

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摘要

In the urban water cycle, there are different ways of handling stormwater runoff. Traditional systems mainly rely on underground piped, sometimes named 'gray' infrastructure. New and so-called 'green/blue' ambitions aim for treating and conveying the runoff at the surface. Such concepts are mainly based on ground infiltration and temporal storage. In this work a methodology to create and compare different planning alternatives for stormwater handling on their pathways to a desired system state is presented. Investigations are made to assess the system performance and robustness when facing the deeply uncertain spatial and temporal developments in the future urban fabric, including impacts caused by climate change, urbanization and other disruptive events, like shifts in the network layout and interactions of 'gray' and 'green/blue' structures. With the Info-Gap robustness pathway method, three planning alternatives are evaluated to identify critical performance levels at different stages over time. This novel methodology is applied to a real case study problem where a city relocation process takes place during the upcoming decades. In this case study it is shown that hybrid systems including green infrastructures are more robust with respect to future uncertainties, compared to traditional network design.
机译:在城市水循环中,有不同的处理雨水径流的方法。传统系统主要依靠地下管道,有时被命名为“灰色”基础设施。新的和所谓的“绿色/蓝”野心旨在处理和传送表面的径流。这些概念主要基于地面渗透和时间存储。在这项工作中,提出了一种制定和比较雨水处理到所需系统状态的雨水处理的不同规划替代品的方法。在面对未来城市面料的深深不确定的空间和时间发展时,将调查评估系统性能和稳健性,包括气候变化,城市化和其他破坏事件所造成的影响,如网络布局的转变和“灰色”的相互作用和“绿色/蓝色”结构。随着信息间隙鲁棒性途径方法,评估了三种规划替代方案,以识别随时间不同阶段的关键性能水平。这种新的方法应用于一个真正的案例研究问题,在即将到来的几十年中发生了城市搬迁过程。在这种情况下,与传统的网络设计相比,包括绿色基础设施的混合系统对未来的不确定性更加稳健。

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