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Best Management Practices for Highway Construction Site Sedimentation Basins

机译:公路施工现场沉淀池的最佳管理实践

摘要

The objective of this PhD research is to develop a set of stormwater Best Management Practices (BMPs) with respect to design, operation and maintenance of sedimentation basins (SBs). Stormwater BMPs may be defined as any program, technology, process, citing criteria, operating method, or device, which controls, prevents, or reduces pollution from stormwater runoff. Sedimentation Basins at construction sites are currently designed for runoff capture rather than for particle removal. Well designed SBs that capture particles effectively are essential for capturing sediments and particulate contaminants (iron, aluminum, manganese and phosphate). An integrated methodology for designing basins incorporating runoff capture, required level of particle removal and effective sediment containment is not available. Through this research an integrated method for designing SBs by applying, rainfall probability plots to determine basin settling volume, Revised Universal Soil Loss Equation (RUSLE) to identify sediment zone volume and overflow rate to identify particle removal in the basin was developed. Further a set of design curves were generated to understand the change in basin performance and cost with change in basin design parameters. In addition the capacity of sedimentation basins to neutralize naturally occurring mildly acidic seeps (pH 5-6) was identified. Best management practices of frequent sediment dredging and maintaining drainage time within five days were suggested for the control of algae growth and mosquito breeding in the basin respectively. The feasibility of adding polymer to enhance sedimentation in the basin during high flow conditions was demonstrated. The suggested integrated design method and the best management practices  address runoff capture, particle removal, pollutant peak attenuation, acidic seep drainage, algae growth and mosquito breeding in the basins. The outcome of this research will yield a methodology for designing SBs that can protect water quality and control particulate contaminants (iron, manganese, phosphate and aluminum) released from construction activities. The new design methodology offers more input choices leading to a number of basin performance and installation cost outputs.
机译:本博士研究的目的是针对沉积池(SBs)的设计,运行和维护制定一套雨水最佳管理实践(BMP)。雨水BMP可以定义为控制,防止或减少雨水径流污染的任何程序,技术,过程,引用标准,操作方法或设备。目前,建筑工地的沉淀池设计用于径流捕获而不是去除颗粒。设计良好且能有效捕获颗粒的SB对于捕获沉积物和颗粒污染物(铁,铝,锰和磷酸盐)至关重要。没有一个综合的方法来设计流域,包括流域捕获,所需的颗粒去除水平和有效的沉积物围堵。通过这项研究,开发了一种综合的设计SB的方法,即通过应用降雨概率图来确定流域的沉降量,修订通用土壤流失方程(RUSLE)来确定沉积物区的体积和溢流率来确定流域中的颗粒物去除。进一步生成了一组设计曲线,以了解流域性能和成本随流域设计参数的变化而变化。此外,还确定了沉淀池能够中和天然存在的轻度酸性渗水(pH 5-6)的能力。为控制流域内的藻类生长和蚊子繁殖,建议经常进行沉积物疏frequent和在五天内保持排水时间的最佳管理方法。证明了在高流量条件下添加聚合物以增强盆地沉积的可行性。建议的综合设计方法和最佳管理方法可解决流域捕获,颗粒物去除,污染物峰衰减,酸性渗漏排水,藻类生长和蚊子繁殖等问题。这项研究的结果将提供一种设计SB的方法,该SB可以保护水质并控制从建筑活动中释放的颗粒污染物(铁,锰,磷酸盐和铝)。新的设计方法提供了更多的输入选择,从而带来了许多流域性能和安装成本输出。

著录项

  • 作者

    Kalainesan Sujaya;

  • 作者单位
  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en
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