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Stormwater retention capabilities of steep sloped, extensive green roof systems.

机译:陡坡,宽阔的绿色屋顶系统的挡雨能力。

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摘要

Over the last 50 years, the world has seen a dramatic population shift from rural areas to urban city centers. In the United States, this change in urbanization has created large impervious surface areas, which have altered the natural processes of the earth's hydrologic cycle by increasing the quantity and flow rates of stormwater runoff impacting highly urbanized areas. In urbanized environments of the United States, sloped roofs account for a large portion of total impervious area (TIA) because single family homes, typically built with sloped roofs, represent the majority of building construction. Green roofs are considered one type of best management practice to help manage stormwater in urban areas.;To date, there has been extensive research done on the stormwater performance of flat green roof systems, but limited data exists on the performance of steep sloped green roofs. If the full stormwater management potential of green roofs is going to be realized, there needs to be wide-scale adoption of green roof technology in our residential housing stock.;Data from this study shows that on average, significantly larger volumes of rainwater are retained and released in delayed peak flow scenarios per rain event, when green roofing materials cover a sloped roof than when traditional roofing materials are used. Green roofing materials retained approximately 40% of cumulative rainfall and traditional roofing materials retained approximately 10% of cumulative rainfall.
机译:在过去的50年中,世界人口从农村地区转移到城市中心地区。在美国,城市化的这种变化造成了不透水的大面积,通过增加影响高度城市化地区的雨水径流的数量和流量,改变了地球水文循环的自然过程。在美国的城市化环境中,斜屋顶占不透水总面积(TIA)的很大一部分,因为通常由斜屋顶建造的独户房屋占了建筑的大部分。绿化屋顶被认为是帮助管理城市地区雨水的最佳管理方法之一。迄今为止,已经对平坦的绿化屋顶系统的雨水性能进行了广泛的研究,但是关于陡坡绿色屋顶的性能数据有限。如果要充分利用绿色屋顶的雨水管理潜力,则需要在我们的住宅房屋中大规模采用绿色屋顶技术。该研究的数据表明,平均而言,可以保留大量的雨水。当绿色屋顶材料覆盖倾斜的屋顶时,与使用传统屋顶材料时相比,在每次降雨事件的峰值流量延迟情况下释放。绿色屋面材料保留了约40%的累积降雨量,而传统屋面材料保留了约10%的累积降雨量。

著录项

  • 作者

    Cronk, Erik.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Engineering Architectural.;Environmental Sciences.;Agriculture Horticulture.
  • 学位 M.A.
  • 年度 2012
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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