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Risk-Based Performance Assessment of Stormwater Drainage Networks under Climate Change: A Case Study in the City of Kingston, ON

机译:气候变化下雨水排水网络的风险绩效评估 - 以金斯敦市为例

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The ability of urban drainage systems to operate satisfactorily under a wide range of possible future hydrologic conditions is an important system characteristic. As weather patterns shift, it is important to understand how local infrastructure may be affected as extreme rainfall events have the potential to cause direct and indirect damages to communities. Continuous simulation in SWMM 5.1 coupled with synthetic precipitation files generated using GCM outputs were used to assess the risk-based performance in terms of reliability, resiliency, and vulnerability of an urban drainage system in the City of Kingston, Ontario, Canada. The study drainage network investigated in this paper never experienced a flooding or surcharging event (i.e., 100% system reliability), however, an observed positive trend in the ratio of conduit depth to full depth over time indicates the potential for unsatisfactory system performance in the future as a result of changing hydrologic conditions due to climate change.
机译:城市排水系统在广泛可能未来的水文条件下令人满意地运行的能力是一个重要的系统特征。随着天气模式的转变,重要的是要了解当地基础设施如何受到极端降雨事件的影响,有可能导致对社区的直接和间接损害。 SWMM 5.1中的连续模拟与使用GCM输出产生的合成降水文件耦合,以评估在加拿大金斯敦市金斯敦市城市排水系统的可靠性,弹性和脆弱性方面的基于风险的性能。研究本文研究的研究排水网络从未经历过洪水或附加费(即100%的系统可靠性),然而,导管深度与全面深度的比例的显微趋势表明了在不令人满意的系统性能的可能性由于气候变化而改变水文条件的未来。

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