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Size Distributions and Settling Velocities of Suspended Particles from Road and Highway

机译:公路和公路上悬浮颗粒物的粒径分布和沉降速度

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Characterization of particles from road runoff is very important for the selection of Best Management Practice (BMP) in the stormwater management. In this study, runoff samples during two rainfall events at four sites in Gyunggio-Do were collected and Particle Size Distributions (PSD) in the size range of 2-880 μm were determined. Then number and mass fraction of each size range was obtained from a total of 89 samples. Also, rainfall amount, flow rate, and other pollutants in samples were analyzed. Particles with less than 5 μm accounted for more than 80% of number fraction while their mass fraction was about 12%. Particles larger than 50 μm contributed more than 40% of mass fraction. Partial Event Mean Concentration (PEMC) of particle showed inverse relationship with accumulated rainfall and sharply decreased at the early stage of rainfall, implying that the first flush is major contribution to particle runoff. Other pollution parameters such as turbidity, TSS, BOD, TN, and TP also have similar temporal runoff trend with the PEMC. Particle settling velocities of runoff particles were obtained by column tests and their values were compared with theoretical velocities. Based on the settling velocity distribution, removal efficiency of particles from runoff by sedimentation was evaluated.
机译:道路径流中的颗粒表征对于选择雨水管理中的最佳管理规范(BMP)非常重要。在这项研究中,收集了Gyunggio-Do四个站点两次降雨事件期间的径流样本,并确定了2-880μm大小范围内的粒径分布(PSD)。然后从总共89个样品中获得每个尺寸范围的数量和质量分数。此外,还分析了样品中的降雨量,流速和其他污染物。小于5μm的粒子占数量分数的80%以上,而其质量分数约为12%。大于50μm的颗粒占质量分数的40%以上。颗粒的部分事件平均浓度(PEMC)与累积的降雨呈反比关系,并且在降雨的早期急剧下降,这意味着第一次冲刷是颗粒径流的主要贡献。其他污染参数(例如浊度,TSS,BOD,TN和TP)也具有与PEMC相似的时间径流趋势。通过柱试验获得径流颗粒的颗粒沉降速度,并将其值与理论速度进行比较。基于沉降速度分布,评估了通过沉降从径流中去除颗粒的效率。

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