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Experimental analysis of green roof substrate detention characteristics

机译:屋顶绿化材料滞留特性的实验分析

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Green roofs may make an important contribution to urban stormwater management. Rainfall-runoff models are required to evaluate green roof responses to specific rainfall inputs. The roof's hydrological response is a function of its configuration, with the substrate - or growing media - providing both retention and detention of rainfall. The objective of the research described here is to quantify the detention effects due to green roof substrates, and to propose a suitable hydrological modelling approach. Laboratory results from experimental detention tests on green roof substrates are presented. It is shown that detention increases with substrate depth and as a result of increasing substrate organic content. Model structures based on reservoir routing are evaluated, and it is found that a one-parameter reservoir routing model coupled with a parameter that describes the delay to start of runoff best fits the observed data. Preliminary findings support the hypothesis that the reservoir routing parameter values can be defined from the substrate's physical characteristics.
机译:绿化屋顶可能对城市雨水管理做出重要贡献。需要降雨径流模型来评估屋顶绿化对特定降雨输入的响应。屋顶的水文响应是其配置的函数,底材-或生长介质-提供降雨的保持和滞留。本文所述研究的目的是量化由于屋顶绿化导致的滞留效应,并提出合适的水文模拟方法。介绍了对绿色屋顶基材进行的实验滞留测试的实验室结果。结果表明,随着基质深度的增加和基质有机物含量的增加,滞留量也随之增加。对基于油藏路径的模型结构进行了评估,发现单参数油藏路径模型与描述径流开始延迟的参数相结合,最符合观测数据。初步发现支持以下假设:可以根据基质的物理特征定义储层路径参数值。

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