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Measurement and Optimization of Permeability in Bioretention Soil Media

机译:生物滞留土壤介质渗透率的测量与优化

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Between October 2013 and September 2014, DC Water completed construction of 15 bioretention facilities as part of two projects in Washington, DC stemming from the utility's Long Term Control Plan (LTCP) for Combined Sewer Overflows (CSOs). Many of the facilities, which were designed to drain within a day after rainfall events, exhibited surface ponding several days after rainfall had stopped. The design team conducted a detailed investigation of possible causes and identified the Bioretention Soil Mixture (BSM) as the culprit. DC Water's investigation into BSM permeability included a review of regional bioretention experience (which revealed a lack of pre- and post-construction permeability testing to validate BSM and facility performance) and more than 400 mesocosm and field permeability tests performed on 25 unique BSM mix designs. The investigation also included particle size analyses, chemical testing, compaction testing, review of the supplier's soil mixing and distribution processes, and installation procedures. This investigation yielded a better understanding of BSM permeability and development of a well-draining BSM mix design that will be applied in the utility's proposed large-scale Green Infrastructure (GI) program.
机译:在2013年10月至2014年9月期间,DC Water在华盛顿特区完成了15个生物保留设施的建设,这是该公用事业公司污水处理厂下水道长期综合控制计划(LTCP)的两个项目的一部分。许多旨在在降雨事件发生后一天之内排水的设施,在降雨停止后的几天内就出现了地表积水现象。设计团队对可能的原因进行了详细调查,并确定了生物滞留土壤混合物(BSM)为罪魁祸首。 DC Water对BSM渗透性的调查包括对区域生物保留经验的回顾(这表明缺乏用于验证BSM和设施性能的施工前和施工后的渗透性测试),以及对25种独特的BSM混合物设计进行了超过400次中观和渗透性测试。调查还包括粒度分析,化学测试,压实测试,对供应商的土壤混合和分配过程的审查以及安装程序。这项调查使人们对BSM的渗透性有了更好的了解,并开发了排水良好的BSM混合物设计,该设计将在公用事业公司提出的大规模绿色基础设施(GI)计划中应用。

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