首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >The role of vegetation in regulating stormwater runoff from green roofs in a winter rainfall climate
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The role of vegetation in regulating stormwater runoff from green roofs in a winter rainfall climate

机译:在冬季降雨气候中植被在调节绿色屋顶雨水径流中的作用

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Extensive green roofs composed of a thin layer of growing medium topped with vegetation can significantly reduce both the timing and magnitude of stormwater runoff relative to a typical impervious roof. However, regional climatic conditions such as seasonality in rainfall and potential evapotranspi-ration could strongly alter the stormwater performance of green roofs. In this study we evaluate the stormwater performance of green roofs in the predominately winter rainfall climate of the U.S. Pacific Northwest. We also test whether the amount of irrigation used to maintain green roof vegetation in a seasonally dry climate such as the Pacific Northwest influences stormwater performance. We monitored stormwater performance over one year for sets of experimental roofs constructed using three designs: a conventional impervious design, a medium-only design, and a typical extensive green roof design that included vegetation. During the winter rainy season vegetation had no significant influence on stormwater retention; medium-only and vegetated roofs reduced stormwater runoff nearly identically relative to the impervious roofs. In contrast, during summer vegetated roofs retained significantly more rainfall than medium-only roofs, although this effect depended strongly on the size of the rain event. In addition, total relative retention for both roof types was significantly higher during summer than during winter. Irrigation significantly reduced summer retention capacity of both medium-only and planted roofs, but only during the largest dry season rain event. These results suggest that cool wet season climates such as the Pacific Northwest are challenging ones for green roof stormwater performance. In order to optimize stormwater benefits of green roofs, designers should create explicitly regional designs that include plant selections better matched to the specific environmental and management constraints.
机译:相对于典型的不渗透屋顶,由覆盖有植被的生长介质薄层组成的广泛的绿色屋顶可以显着减少雨水径流的时间和数量。但是,区域气候条件(如降雨的季节性和潜在的蒸发蒸腾)可能会强烈改变绿化屋顶的雨水性能。在这项研究中,我们评估了美国西北太平洋地区冬季降雨为主的绿色屋顶的雨水性能。我们还测试了在西北太平洋等季节性干燥气候下用于维持屋顶绿化植被的灌溉量是否会影响雨水性能。我们对使用三种设计建造的一组实验屋顶的雨水性能进行了一年的监测:传统的防渗设计,中等设计和典型的包括植被在内的大面积绿色屋顶设计。在冬季的雨季,植被对雨水保持没有显着影响。相对于不透水的屋顶,只有中型和无植被的屋顶减少了雨水径流。相反,在夏季,植被屋顶比中型屋顶保留的降雨要多得多,尽管这种影响在很大程度上取决于降雨事件的大小。另外,两种屋顶类型的总相对保持力在夏季明显高于冬季。灌溉大大降低了中型和种植屋顶的夏季保水能力,但仅限于最大的旱季降雨事件。这些结果表明,凉爽的雨季气候(如西北太平洋地区)对于屋顶绿化雨水性能具有挑战性。为了优化绿色屋顶的雨水效益,设计人员应明确创建区域设计,其中包括与特定环境和管理约束条件更匹配的工厂选择。

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