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Development of a randomized sampling methodology for characterization of chlorine residual in drinking water distribution systems.

机译:开发用于表征饮用水分配系统中氯残留量的随机采样方法。

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摘要

Despite the production of high quality drinking water at the treatment plant, many opportunities exist in the distribution system for water quality to deteriorate. The quality of water in the distribution system must be assessed by extracting samples of the drinking water from various locations in the system. The research presented here examines sampling for water quality in distribution systems from several perspectives. First, a summary of case studies is presented to illustrate the variable nature of disinfection by-product occurrence in distribution systems and to highlight the need for intensive sampling. Comprehensive sampling in distribution systems is then addressed through the development of a randomized, stratified sampling methodology. The sampling methodology presents a set of tools for water utilities to design a sampling program that addresses a specific sampling goal. Through the use of stratification, water quality estimates can be compared between sub-groups of the system. Furthermore, the statistical framework of the methodology helps to eliminate bias in sampling results and provides a level of confidence in sample data that is lacking under current ad-hoc sampling protocols. Finally, several important components of sampling design are examined, based on the application of the sampling methodology to a case study water utility. The number of samples and time of sample collection were found to affect the estimates of water quality made from sample data.
机译:尽管在处理厂生产高质量的饮用水,但是分配系统中存在许多使水质恶化的机会。必须通过从系统中各个位置提取饮用水样本来评估分配系统中的水质。本文介绍的研究从多个角度检查了分配系统中水质的采样情况。首先,对案例进行了总结,以说明分配系统中消毒副产物的发生的可变性,并强调需要进行大量采样。然后,通过开发一种随机,分层的抽样方法来解决配电系统中的综合抽样问题。抽样方法为水务公司提供了一套工具,用于设计解决特定抽样目标的抽样程序。通过分层,可以比较系统子组之间的水质估计。此外,该方法的统计框架有助于消除采样结果中的偏差,并提供对当前临时采样协议所缺乏的样本数据的置信度。最后,在将抽样方法应用于案例研究供水公司的基础上,研究了抽样设计的几个重要组成部分。发现样本数量和样本收集时间会影响根据样本数据得出的水质评估。

著录项

  • 作者

    Speight, Vanessa Lynn.;

  • 作者单位

    The University of North Carolina at Chapel Hill.;

  • 授予单位 The University of North Carolina at Chapel Hill.;
  • 学科 Engineering Environmental.; Engineering Civil.; Engineering Sanitary and Municipal.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 92 p.
  • 总页数 92
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;建筑科学;建筑科学;
  • 关键词

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