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Towards a generic rainfall-runoff model for green roofs.

机译:建立通用的屋顶绿化径流模型。

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摘要

A simple conceptual model for green roof hydrological processes is shown to reproduce monitored data, both during a storm event, and over a longer continuous simulation period. The model comprises a substrate moisture storage component and a transient storage component. Storage within the substrate represents the roof's overall stormwater retention capacity (or initial losses). Following a storm event the retention capacity is restored by evapotranspiration (ET). However, standard methods for quantifying ET do not exist. Monthly ET values are identified using four different approaches: analysis of storm event antecedent dry weather period and initial losses data; calibration of the ET parameter in a continuous simulation model; use of the Thornthwaite ET formula; and direct laboratory measurement of evaporation. There appears to be potential to adapt the Thornthwaite ET formula to provide monthly ET estimates from local temperature data. The development of a standardized laboratory test for ET will enable differences resulting from substrate characteristics to be quantified.
机译:显示了一个简单的屋顶水文过程概念模型,可以在暴风雨期间和更长的连续模拟时间内重现监视数据。该模型包括基材水分存储组件和瞬态存储组件。基质内的存储代表了屋顶的总体雨水保持能力(或初始损失)。暴风雨后,保留能力通过蒸散量(ET)恢复。但是,不存在用于量化ET的标准方法。使用四种不同的方法来确定月度ET值:暴风雨事件发生之前干旱季节的分析和初始损失数据;在连续模拟模型中校准ET参数;使用Thornthwaite ET公式;并直接在实验室测量蒸发量。似乎有可能使Thornthwaite ET公式适应以根据当地温度数据提供每月ET估算值。针对ET的标准化实验室测试的开发将能够量化由底物特性引起的差异。

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