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Green-roof as a solution to solve stormwater management issues? Assessment on a long time period at the parcel scale

机译:绿化屋顶作为解决雨水管理问题的解决方案?以包裹规模进行长时间评估

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Experimental green-roof rainfall-runoff observations have shown a positive impact on stormwater management at the building scale; with a decrease in the peak discharge and a decrease in runoff volume. This efficiency of green-roofs varies from one rainfall event to another depending on precipitation characteristics and substrate antecedent conditions. Due to this variability, currently, green-roofs are rarely officially used as a regulation tool to manage stormwater. Indeed, regulation rules governing the connection to the stormwater network are usually based on absolute threshold values that always have to be respected: maximum areal flow-rate or minimum retention volume for example. In this context, the aim of this study is to illustrate how a green-roof could represent an alternative to solve stormwater management issues, if the regulation rules were further based on statistics. For this purpose, a modelling scheme has been established at the parcel scale to simulate the hydrological response of several roof configurations: impervious, strictly regulated (in terms of areal flow-rate or retention volume), and covered by different types of green-roof matter. Simulations were carried out on a long precipitation time period (23 years) that included a large and heterogeneous set of hydrometeorological conditions. Results obtained for the different roof configurations were compared. Based on the return period of the rainfall event, the probability to respect some regulation rules (defined from real situations) was assessed. They illustrate that green-roofs reduce stormwater runoff compared to an impervious roof surface and can guarantee the respect of the regulation rules in most of the cases. Moreover, their implementation can appear more realistic than that of other infrastructures strictly complying with regulations and demanding significant storage capacity.
机译:实验性的屋顶绿化降雨径流观测已显示出对建筑规模雨水管理的积极影响。峰值流量减少,径流量减少。绿屋顶的这种效率在一次降雨事件和另一次降雨事件之间有所不同,具体取决于降雨特征和基质的先行条件。由于这种可变性,目前,绿化屋顶很少正式用作管理雨水的调节工具。确实,控制与雨水管网连接的规则通常是基于绝对阈值,必须始终遵守这些绝对阈值:例如最大面流量或最小保留体积。在这种情况下,本研究的目的是说明如果监管规则进一步基于统计数据,那么绿屋顶如何可以代表解决雨水管理问题的替代方案。为此,已经在地块范围内建立了一个建模方案,以模拟几种屋顶结构的水文响应:不透水,严格调节(就面积流量或保持量而言),并用不同类型的绿化屋顶覆盖物。模拟是在一个长的降水时间段(23年)上进行的,其中包括大量的非均质的水文气象条件。比较了不同屋顶结构获得的结果。根据降雨事件的重现期,评估了遵守某些法规(根据实际情况定义)的可能性。他们说明,与不透风的屋顶表面相比,绿化屋顶可以减少雨水径流,并且在大多数情况下可以保证遵守法规。而且,与严格遵守法规并要求大量存储容量的其他基础架构相比,它们的实施显得更为现实。

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