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FACTORS AFFECTING SEDIMENT BASIN EFFICIENCY ON HIGHWAY CONSTRUCTION SITES IN THE PIEDMONT REGION OF NORTH CAROLINA

机译:北卡罗莱纳州皮德蒙地区泥沙流域效率对高速公路建设站点的影响

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摘要

Sediment basins are a commonly used best management practice on North Carolina Department of Transportation (NCDOT) highway construction sites for capturing entrained sediment during stormwater runoff events. The NCDOT currently uses a sediment basin design that has a volume proportional to the disturbed catchment area and a surface area proportional to the 10-year peak runoff discharge from the catchment. This project monitored four active NCDOT sediment basins in the Piedmont region of North Carolina to evaluate several hydrologic and land use parameters for their ability to explain the variability of turbidity and total suspended solids (TSS) entering the basins as well as the efficiency of the basins with regard to these two parameters. TSS ranged from 270 to 53,000 mg L-1 entering the basins and from 87 to 70,600 mg L-1 leaving the basins. Turbidity ranged from 198 to 29,000 nephelometric turbidity units (NTU) entering the basins and from 27 to 28,700 NTU leaving the basins. There was no clear relationship between the stages of development or site activities and the turbidity and TSS entering the basins. Peak flow, which is used in the design of NCDOT sediment basins, was positively correlated with inlet turbidity and TSS. Additionally, the performance of the basins to reduce turbidity and TSS did not correlate to storm characteristics. The diversion ditches leading to the basins appeared to be a major source of sediment and likely contributed to the high variability in turbidity, TSS, and basin performance.
机译:沉积盆地是北卡罗来纳州交通部(NCDOT)高速公路施工现场常用的最佳管理方法,用于在雨水径流事件中捕获夹带的沉积物。 NCDOT当前使用的沉淀池设计的容积与受干扰的集水区成正比,表面积与从集水区获得的10年高峰径流量成正比。该项目监测了北卡罗莱纳州皮埃蒙特地区的四个活跃的NCDOT沉积盆地,以评估几个水文和土地利用参数,以解释进入该盆地的浊度和总悬浮固体(TSS)的变异性以及这些盆地的效率关于这两个参数。 TSS进入盆地的范围为270至53,000 mg L-1,离开盆地的范围为87至70,600 mg L-1。进入盆地的浊度范围为198至29,000 NTU,离开盆地的浊度范围为27至28,700 NTU。在开发或现场活动的阶段与进入盆地的浊度和TSS之间没有明确的关系。 NCDOT沉积池设计中使用的峰值流量与进水浊度和TSS正相关。此外,流域减少浊度和TSS的性能与风暴特征无关。导致盆地的分流沟似乎是沉积物的主要来源,并可能导致浊度,TSS和盆地性能的高度变化。

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