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A generic hydrological model for a green roof drainage layer

机译:屋顶绿化排水层的通用水文模型

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A rainfall simulator of length 5 m and width 1 m was used to supply constant intensity and largely spatially uniform water inflow events to 100 different configurations of commercially available green roof drainage layer and protection mat. The runoff from each inflow event was collected and sampled at one-second intervals. Time-series runoff responses were subsequently produced for each of the tested configurations, using the average response of three repeat tests. Runoff models, based on storage routing (dS/dt = I-Q) and a power-law relationship between storage and runoff (Q = kS~n), and incorporating a delay parameter, were created. The parameters k, n and delay were optimized to best fit each of the runoff responses individually. The range and pattern of optimized parameter values was analysed with respect to roof and event configuration. An analysis was performed to determine the sensitivity of the shape of the runoff profile to changes in parameter values. There appears to be potential to consolidate values of n by roof slope and drainage component material.
机译:使用长度为5 m,宽度为1 m的降雨模拟器向100种不同配置的可商购的绿色屋顶排水层和防护垫提供恒定的强度和在空间上均匀的水流入事件。每个流入事件的径流都以一秒钟的间隔进行收集和采样。随后,使用三个重复测试的平均响应,为每个测试配置产生了时间序列径流响应。基于存储路径(dS / dt = I-Q)以及存储与径流之间的幂律关系(Q = kS〜n)并结合了延迟参数,创建了径流模型。对参数k,n和延迟进行了优化,以最佳地分别拟合每个径流响应。针对屋顶和事件配置分析了优化参数值的范围和模式。进行分析以确定径流剖面形状对参数值变化的敏感性。似乎有可能通过屋顶坡度和排水构件材料来合并n值。

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