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Paved area reduction factors for stormwater low impact and development and incentives.

机译:减少雨水铺设面积的因素对雨水的影响和开发及激励措施低。

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摘要

Paved Area Reduction Factors, herein referred to as PARFs, developed within this research are applied to quantify the benefits of stormwater best management practices and low impact development. A PARF can be used to provide stormwater incentives that will enhance stormwater quality and reduce stormwater quantity. A site effective impervious model is developed by applying overland flow concepts that couple continuity, non-linear reservoir routing, and Manning's open channel flow equations. Overland flow equations are used to quantify the routing of stormwater flow from impervious to pervious drainage areas. When flow is routed from impervious to pervious drainage areas additional infiltration and depression losses occur into the pervious zone, which create an effective impervious value that is less than the area weighted imperviousness of a watershed. The effective impervious values in this research incorporate both constant and temporally varied infiltration rates and rainfall distributions. Based on the effective impervious value a monetary correlation is derived that considers the net present and future value of a site effective impervious model when it is compared to the area weighted impervious model. The site effective impervious model was tested at a water quality research facility located at Parking Lot K on the Auraria campus of the University of Colorado Denver. Field tests include a hydraulic model that was calibrated with three years of rainfall and runoff data recorded at the testing facility. There is a strong correlation with the theoretical development of PARFs when they are compared to measured rainfall events and also when design storm distributions are applied to the calibrated field model. Four case studies presented in this research conclude that PARFs are accurate and applicable to other regions and storm distributions and can also be applied to different hydrologic procedures to estimate runoff from a developed watershed. Case studies with the calibrated hydrologic model showed an agreement within 20 percent of the theoretical predicted values. It was also shown that the theory developed in this research can be applied to the widely used Soils Conservation Service rainfall distributions and hydrologic modeling applications. The PARFs developed in this research can be applied by a local stormwater utility or engineer to provide an incentive for stormwater management practices.
机译:在这项研究中开发的铺面减少因子(以下称为PARF)可用于量化雨水最佳管理实践和低影响开发的收益。 PARF可用于提供雨水激励措施,以提高雨水质量并减少雨水数量。通过应用耦合连续性,非线性油藏路径选择和曼宁明渠流方程的陆上水流概念,开发出了有效的场地防渗模型。陆上水流方程用于量化雨水从不透水流向透水流域的路径。当流量从不透水区域流向透水排水区域时,渗透区域内会产生更多的渗透和压降损失,这将产生一个有效的不透水值,该值小于流域加权加权的不透水区域。在这项研究中,有效的不透水值包括了恒定和随时间变化的入渗率和降雨分布。根据有效不透水价值,得出了货币相关性,当与区域加权不透水模型进行比较时,该货币相关性考虑了站点有效不透水模型的净现值和未来值。在科罗拉多丹佛大学Auraria校区停车场K停车场的水质研究机构对现场有效防渗模型进行了测试。现场测试包括一个液压模型,该模型已通过测试设施记录的三年降雨和径流数据进行了校准。将PARF与测得的降雨事件进行比较,以及将设计暴风雨分布应用于校准场模型时,与PARF的理论发展都具有很强的相关性。本研究中提出的四个案例研究得出的结论是,PARFs准确且适用于其他地区和暴风雨分布,还可以应用于不同的水文程序,以估算已开发流域的径流。校准水文模型的案例研究表明,在理论预测值的20%以内达成了一致。还表明,本研究中开发的理论可以应用于广泛使用的土壤保护局降雨分布和水文模拟应用。这项研究中开发的PARF可以由当地的雨水公司或工程师应用,以鼓励雨水管理实践。

著录项

  • 作者

    Blackler, Gerald E.;

  • 作者单位

    University of Colorado at Denver.;

  • 授予单位 University of Colorado at Denver.;
  • 学科 Engineering Civil.;Water Resource Management.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 230 p.
  • 总页数 230
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 石油、天然气工业;
  • 关键词

  • 入库时间 2022-08-17 11:41:23

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