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Effects of Surface Area and Inflow on the Performance of Stormwater Best Management Practices with Uncertainty Analysis

机译:不确定性分析:表面积和流入量对雨水最佳管理实践性能的影响

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The performance of stormwater best management practices (BMPs) is affected by BMP geometric and hydrologic factors. The objective of this study was to investigate the effect of BMP surface area and inflow on BMP performance using the k-C* model with uncertainty analysis. Observed total suspended solids (TSS) from detention basins and retention ponds data sets in the International Stormwater BMP Database were used to build and evaluate the model. Detention basins are regarded as dry ponds because they do not always have water, whereas retention ponds have a permanent pool and are considered wet ponds. In this study, Latin hypercube sampling (LHS) was applied to consider uncertainty in both influent event mean concentration (EMC), C_(in), and the areal removal constant, k. The latter was estimated from the hydraulic loading rate, q, through use of a power function relationship. Results show that effluent EMC, C_(out), decreased as inflow decreased and as BMP surface area increased in both detention basins and retention ponds. However, the change in C_(out), depending on inflow and BMP surface area for detention basins, differed from the change in C_(out) for retention ponds. Specifically, C_(in) was more dominantly associated with the performance of the k-C~* model of detention basins than were BMP surface area and inflow. For retention ponds, however, results suggest that BMP surface area and inflow both influenced changes in C_(out) as well as C_(in). These results suggest that sensitive factors in the performance of the k-C~* model are limited to C_(in) for detention basins, whereas BMP surface area, inflow, and C_(in) are important for retention ponds.
机译:雨水最佳管理规范(BMP)的性能受BMP几何和水文因素影响。这项研究的目的是使用带有不确定性分析的k-C *模型来研究BMP表面积和流入量对BMP性能的影响。使用国际雨水BMP数据库中来自滞留盆地和滞留池塘的观测总悬浮固体(TSS)数据集来构建和评估模型。滞留池被视为干池,因为它们并不总是有水,而滞留池则具有永久性池,被视为湿池。在这项研究中,使用拉丁文超立方采样(LHS)来考虑进水事件平均浓度(EMC)C_(in)和区域去除常数k的不确定性。后者是通过使用幂函数关系从液压负载率q估算的。结果表明,在滞留池和滞留池中,随着流入量的减少和BMP表面积的增加,流出的EMC C_(out)减少。但是,C_(out)的变化取决于滞留池的流入量和BMP表面积,与保留池的C_(out)的变化不同。具体而言,与BMP表面积和流入量相比,C_(in)与滞留盆地k-C〜*模型的性能更主要相关。但是,对于保留池,结果表明BMP表面积和流入量都影响C_(out)和C_(in)的变化。这些结果表明,k-C〜*模型性能的敏感因素仅限于滞留盆地的C_(in),而BMP表面积,流入量和C_(in)对于滞留池很重要。

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