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Sustainable urban drainage systems in established city developments: Modelling the potential for CSO reduction and river impact mitigation

机译:既定城市发展中可持续城市排水系统:建模CSO减少和河流影响的潜力

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摘要

Sustainable urban drainage systems (SUDS) can significantly reduce runoff from urban areas. However, their potential to mitigate acute river impacts of combined sewer overflows (CSO) is largely unknown. To close this gap, a novel coupled model approach was deployed that simulates the effect of realistic SUDS strategies, developed for an established city quarter, on acute oxygen depressions in the receiving river. Results show that for an average rainfall year the SUDS strategies reduce total runoff by 28%-39% and peak runoff by 31%-48%. Resulting relative reduction in total CSO volume ranges from 45%-58%, exceeding annual runoff reduction from SUDS by a factor of 1.5. Negative impacts in the form of fish-critical dissolved oxygen (DO) conditions in the receiving river (<2 mg DO L~(-1)) can be completely prevented with the SUDS strategies for an average rainfall year. The realistic SUDS strategies were compared with a simpler simulation approach which consists in globally downscaling runoff from all impervious areas. It indicates that such a simple approach does not completely account for the positive effect of SUDS, underestimating CSO volumes for specific rain events by up to 13%. Accordingly, global downscaling is only recommended for preliminary planning purposes.
机译:可持续城市排水系统(SUDS)可以显着减少城市地区的径流。然而,他们潜力能够减轻组合下水道溢出(CSO)的急性河流影响在很大程度上。为了缩短这种差距,部署了一种新颖的耦合模型方法,模拟了现实苏打策略的效果,为已建立的城市季度开发,在接收河中的急性氧气萧条上。结果表明,对于平均降雨年,苏打策略将径流量减少28%-39%,峰值径流达到31%-48%。导致总CSO体积的相对降低范围为45%-58%,超过从泡沫的年径流减少1.5倍。在接收河中的鱼临界溶解氧(DO)条件的形式的负面影响(<2mg DO L〜(-1))可以通过苏打策略进行平均降雨年度。将逼真的泡沫策略与一种简单的仿真方法进行了比较,这些方法包括从所有不透水区域的全球落下的径流。它表明,这种简单的方法并不完全占泡沫的积极作用,低估了特定雨量事件的CSO体积,高达13%。因此,仅推荐全球缩小以促进初步规划目的。

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