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首页> 外文期刊>Journal of hydrologic engineering >Comparison of Observed Infiltration Rates of Different Permeable Urban Surfaces Using a Cornell Sprinkle Infiltrometer
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Comparison of Observed Infiltration Rates of Different Permeable Urban Surfaces Using a Cornell Sprinkle Infiltrometer

机译:康奈尔洒水渗透仪比较不同渗透性城市表面的渗透率

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摘要

Efforts to retrofit pervious surfaces into urban landscapes are ongoing, yet the in situ infiltration rates of such surfaces have not been adequately studied. Of increasing interest in urban stormwater management is whether the infiltration rates of different permeable surfaces can be reliably estimated based on surface type alone. To this aim, a total of 139 infiltration tests were conducted using a Cornell sprinkle infiltrometer at 39 different sites distributed within New York City and Philadelphia. The results show significant statistical differences among surfaces: urban parks and tree pits without guards have the lowest infiltration rates; vegetated courtyards, tree pits with guards, porous pavers, backyards, and bioretention facilities display moderate infiltration rates; and porous concrete has the highest infiltration rate. The infiltration rates measured for most of the sites are similar or greater than the local design storm, suggesting that minimal rainfall excess would be generated from these surfaces as long as sufficient subsurface storage space is available.
机译:正在进行将透水表面改造成城市景观的努力,但是尚未充分研究这种表面的原位渗透率。在城市雨水管理中,人们越来越感兴趣的是,是否可以仅根据表面类型可靠地估计不同渗透性表面的渗透率。为了达到这个目的,使用康奈尔(Cornell)滴灌渗透仪在分布于纽约市和费城的39个不同地点进行了139次渗透测试。结果表明表面之间存在显着的统计差异:城市公园和没有护卫设施的树木坑的渗透率最低;植被茂密的庭院,带护栏的树坑,多孔的摊铺机,后院和生物保留设施的渗透率中等;多孔混凝土的渗透率最高。对大多数站点测得的入渗率与当地设计风暴相似或更高,这表明只要有足够的地下存储空间,这些表面就会产生最少的降雨。

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