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Comparison of blue-green solutions for urban flood mitigation: A multi-city large-scale analysis

机译:城市防洪蓝绿色解决方案的比较:多城市大规模分析

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Flooding risk in cities has been recently exacerbated by increased urbanization and climate change, often with catastrophic consequences in terms of casualties and economic losses. Rainwater harvesting systems and green roofs are recognized as being among the most effective blue-green mitigation measures. However, performances of these systems have currently been investigated only at laboratory or very-small local scales. In this work, we assess the potential benefit of the extensive installation of these solutions on all the rooftops of 9 cities, with different climatological and geographical characteristics. Both surface discharge reduction and delay between rainfall and runoff peak generation have been investigated. Green roofs ensure a larger average lag time between rainfall and runoff peaks than rainwater harvesting systems, without significant differences between intensive and extensive structures. On the other hand, the cost-efficiency analysis, considering the entire urban area, shows a higher retention capacity with a lower financial investment for rainwater harvesting rather than for green roofs in most cases. For extreme rainfall events, large-scale installation of rainwater harvesting systems coupled with intensive green roofs over the entire city have shown to be the most efficient solution, with a total discharge reduction that can vary from 5% to 15%, depending on the city characteristics and local climate.
机译:城市的洪水风险最近通过增加城市化和气候变化而加剧,往往在伤亡和经济损失方面遭到灾难性后果。雨水收集系统和绿色屋顶被认为是最有效的蓝绿色缓解措施之一。然而,目前仅在实验室或非常小的本地尺度上进行了研究的这些系统的性能。在这项工作中,我们评估了在9个城市的所有屋顶上广泛安装这些解决方案的潜在好处,具有不同的气候和地理特征。已经研究了降雨和径流峰值生成之间的表面放电降低和延迟。绿色屋顶确保降雨和径流峰之间的平均平均滞后时间,而不是雨水收集系统,无需密集和广泛的结构之间的显着差异。另一方面,考虑整个城市地区的成本效率分析表现出更高的保留能力,在大多数情况下,对雨水收获的金融投资较低,而不是绿色屋顶。对于极端的降雨事件,大规模安装整个城市的雨水收集系统与整个城市的密集绿色屋顶相结合,已经显示出最有效的解决方案,总排放量可从5%到15%变化,具体取决于城市特点和地方气候。

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