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Water Exclosure Treatment System (WETS): An innovative device for minimizing beach closures

机译:污水处理系统(WETS):一种用于减少海滩封闭的创新设备

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摘要

A Water Exclosure Treatment System (WETS) is developed and installed to minimize the occurrence of beach closures due to algae andEscherchia coli(E. coli) in an inland lake. WETS consists of an “exclosure” sub-system with a five-sided polypropylene, barrier that excludes offshore lake contaminated water from the swimming area. Inside the exclosure, water is pumped to a portable filtration-ultraviolet treatment sub-system with three components. First, heavy debris like aquatic plants are removed through a strainer. Second, fine particles are removed through a sand filter and backwashing is automated through a program logic controller triggered by pressure sensor readings. Third, pathogens, algae, bacteria, and viruses are inactivated through ultraviolet (UV) disinfection. To determine sizing of sand filters and evaluation of efficiency of UV disinfection and aid in the design of the inlet and outlet locations for the pump system, computational fluid dynamics modeling with a Lagrangian particle-tracking method are employed. Flushing time is determined to range from 0.67 to 1.89days. Residence time maps reveal inlet and outlet locations play an important role in depicting the duration of particles within the swimming area. Comprehensive water quality sampling is conducted and analyzed with ANOVA testing reveal that water quality parameters inside the exclosure are significantly different than those outside. There have been no beach closures issued since deployment of WETS. Overall, WETS, an innovative Water Exclosure Treatment System, provides safe, clean water inside the exclosure for minimizing beach closure.
机译:开发并安装了水处理系统(WETS),以最大程度减少内陆湖中因藻类和大肠杆菌引起的海滩关闭。 WETS由带有五面聚丙烯的“隔离”子系统组成,该隔离层可将游泳区的近海湖泊污染水排除在外。在泄漏物内部,水被泵送到具有三个组件的便携式过滤-紫外线处理子系统中。首先,通过过滤器清除像水生植物这样的重物。其次,通过砂滤器去除细颗粒,并通过由压力传感器读数触发的程序逻辑控制器自动进行反冲洗。第三,病原体,藻类,细菌和病毒通过紫外线(UV)消毒而失活。为了确定滤砂器的尺寸并评估紫外线消毒的效率,并帮助设计泵系统的入口和出口位置,采用了采用拉格朗日粒子跟踪方法的计算流体动力学模型。确定冲洗时间为0.67至1.89天。停留时间图显示入口和出口位置在描绘游泳区内颗粒的持续时间方面起着重要作用。进行了全面的水质采样,并通过ANOVA测试进行了分析,结果表明,泄密物内部的水质参数与外界的水质参数显着不同。自部署WETS以来,尚未关闭任何海滩。总体而言,WETS是一种创新的水处理系统,可在安全区域内提供安全,干净的水,从而最大程度地减少海滩封闭。

著录项

  • 来源
    《The Science of the Total Environment》 |2018年第1期|809-818|共10页
  • 作者单位

    Department of Civil and Environmental Engineering, University of Wisconsin;

    Department of Civil and Environmental Engineering, University of Wisconsin;

    Department of Public Health of Madison and Dane County;

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  • 原文格式 PDF
  • 正文语种 eng
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