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ASSESSING THE ACCURACY OF BIORETENTION INSTALLATION IN NORTH CAROLINA

机译:评估北卡罗莱纳州的生物强化安装的准确性

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The performance of bioretention cells (BRCs) depends upon their capacity to store an adequate amount of runoff such that the desired stormwater volume and pollutant load are retained. Performance is also dependent upon the use of a suitable soil media that can provide storage within the void space, adequate infiltration between storm events, and substrate for plant and microbial interactions. Widespread construction of improperly designed cells could have substantial environmental consequences because of frequent overflow events. To determine if this is indeed a problem, 20 BRCs throughout North Carolina were assessed. Topographic surveys were performed and the as-built surface storage (ponding within the basin below the outlet elevation) was calculated using CAD software. Visual inspections of the soil profile were used to identify hydric soils and moisture regime. Particle-size distribution of the soil media at various depths was determined using the hydrometer method and permeability was estimated with constant-head saturated hydraulic conductivity tests. Results were compared to the intended storage volumes and soil specifications from original design calculations and construction plans. Preliminary findings show that 82% and 44% of BRC soil media failed to satisfy particle-size distribution and permeability specifications, respectively. Additionally, 50% of surveyed BRCs were either moderately or severely undersized. Continuing research will confirm whether BRCs throughout North Carolina are improperly installed and maintained. Research findings will be used to evaluate state requirements and provide recommendations to ensure that installed BRCs satisfy water quality and flood control regulations.
机译:生物滞留池(BRC)的性能取决于其存储足够量径流的能力,以便保留所需的雨水量和污染物负荷。性能还取决于使用合适的土壤介质,该介质可以提供空隙空间内的存储,风暴事件之间的充分渗透以及植物和微生物相互作用的基质。由于频繁的溢出事件,设计不当的电池的广泛构造可能会对环境造成重大影响。为了确定这是否确实存在问题,对北卡罗来纳州的20个BRC进行了评估。进行了地形调查,并使用CAD软件计算了已建成的地面存储量(在出口高程以下的盆地内响应)。用肉眼检查土壤剖面,以识别含水土壤和水分状况。使用比重计法确定了不同深度土壤介质的粒径分布,并通过恒定水头饱和水力传导率试验估算了渗透率。将结果与原始设计计算和施工计划中的预期存储量和土壤规格进行了比较。初步发现表明,分别有82%和44%的BRC土壤介质不能满足粒径分布和渗透率指标要求。此外,接受调查的BRC中有50%的规模过小或过小。继续进行的研究将确定整个北卡罗来纳州的BRC是否安装和维护不当。研究结果将用于评估各州的要求并提供建议,以确保已安装的BRC满足水质和防洪法规。

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