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首页> 外文期刊>Journal of Environmental Management >Hydrological modelling of green and grey roofs in cold climate with the SWMM model
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Hydrological modelling of green and grey roofs in cold climate with the SWMM model

机译:SWMMH模型在寒冷气候下绿色和灰色屋顶的水文模拟

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摘要

Rooftop retrofitting targets the largest land-use type available for reduction in impervious surfaces area in urban areas. Extensive green and grey roofs offer solution for retention and detention of stormwater in densely developed urban areas. Among the available green roof types, the extensive green roof has become a popular selection and commonly adopted choice. These solutions provide multiple benefits for stormwater and environmental management due to stormwater retention and detention capacities. The Storm Water Management Model (SWMM) 5.1.012 with Low Impact Development (LID) Controls was used to model the hydrological performance of a green and a grey (nonvegetated detention roof based on extruded lightweight aggregates) roof (located in the coastal area of Trondheim, Norway) by defining the physical parameters of individual layers in LID Control editor. High-resolution 1-min data from a previously monitored green and grey roof were used for calibration. Six parameters within the individual LID layers: soil (four parameters) and drainage mat (two parameters) were selected for calibration. After calibration, the SWMM model simulated runoff with a Nash-Sutcliffe model efficiency (NSME) of 0.94 (green roof) and 0.78 (grey roof) and a volume error of 3% for the green roof, and 10% for the grey roof. Validation of the calibrated model indicates good fit between observed and simulated runoff with a NSME of 0.88 (green roof) and 0.81 (grey roof) and with volume errors of 29% (green roof) and 11% (grey roof). Concerning the snowmelt modelling, the calibrated model showed a NSME of 0.56 (green roof) and 0.37 (grey roof) through the winter period. However, regarding volume errors, additional model development for winter conditions is needed; 30% (green roof) and 11% (grey roof). Optimal parameter sets were proposed within both the green and grey configurations. The results from calibration and especially validation indicated that SWMM could be used to simulate the performance of different rooftop solutions. The study provides insight for urban planners of how to target and focus the implementation of rooftop solutions as stormwater measures.
机译:屋顶翻新的目标是最大的土地利用类型,以减少城市区域的不透水面积。广泛的绿色和灰色屋顶为密集城市地区的雨水保留和滞留提供了解决方案。在可用的绿色屋顶类型中,广泛的绿色屋顶已成为一种流行的选择和普遍采用的选择。由于雨水的保留和滞留能力,这些解决方案为雨水和环境管理提供了多个好处。具有低影响开发(LID)控件的雨水管理模型(SWMM)5.1.012用于对绿色和灰色(基于挤压轻质骨料的无植被滞留屋顶)屋顶(位于沿海地区)的水文性能进行建模。挪威特隆赫姆),方法是在LID控制编辑器中定义各个图层的物理参数。来自先前监控的绿色和灰色屋顶的高分辨率1分钟数据用于校准。在各个LID层中选择了六个参数:土壤(四个参数)和排水垫(两个参数)进行校准。校准后,SWMM模型使用0.94(绿色屋顶)和0.78(灰色屋顶)的Nash-Sutcliffe模型效率(NSME)模拟径流,绿色屋顶的体积误差为3%,灰色屋顶的体积误差为10%。校准模型的验证表明,NSME分别为0.88(绿色屋顶)和0.81(灰色屋顶)且体积误差为29%(绿色屋顶)和11%(灰色屋顶)时,观测到的径流与模拟径流之间具有良好的拟合度。关于融雪模型,经过校准的模型显示整个冬季的NSME为0.56(绿色屋顶)和0.37(灰色屋顶)。但是,关于体积误差,需要针对冬季条件进行其他模型开发; 30%(绿色屋顶)和11%(灰色屋顶)。在绿色和灰色配置中都提出了最佳参数集。校准和特别是验证的结果表明,SWMM可用于模拟不同屋顶解决方案的性能。该研究为城市规划者提供了有关如何以雨水措施为目标并集中实施屋顶解决方案的见解。

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