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A heuristic methodology for locating monitoring stations to detect contamination events in potable water distribution systems.

机译:用于定位监测站以检测饮用水分配系统中污染事件的启发式方法。

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摘要

The requirements to protect public water systems from intentional contamination have expanded in the years following September 11, 2001. The areal extent and non-linear nature of water demand and movement in the distribution system makes efficient location of sampling points difficult. This difficulty is compounded by the fact that contamination conceptually can occur at any point and at any time within the distribution system. Small to mid-sized water systems are especially at a disadvantage in addressing this issue due to limited resources available to them.;This paper proposes a heuristic methodology to identify strategic locations within the system that can be established as critical detection points for such occurrences. The process uses off-the-shelf software and is structured to be accessible to small and mid-sized water system managers. This methodology is different from others proposed in the literature in that it uses computer simulations to create a database of water system response to contamination at every node in the system. A process is developed to mine this database systematically after considering concentration thresholds and "time since injection" parameters. Finally, using pivot tables and graphs, a network of monitoring locations is identified to provide efficient coverage of the system under the conditions imposed.
机译:在2001年9月11日之后的几年中,保护公共水系统免受故意污染的要求有所增加。水的需求范围和非线性以及分配系统中的流动性使采样点的有效定位变得困难。这一困难因以下事实而变得更加复杂:从概念上讲,污染可以在分配系统内的任何时间,任何时间发生。由于可用资源有限,中小型水系统在解决此问题上尤其处于劣势。本文提出了一种启发式方法,可以识别系统中的战略位置,可以将其确定为此类事件的关键检测点。该过程使用现成的软件,其结构使中小型水系统管理员可以访问。该方法与文献中提出的其他方法不同,它使用计算机模拟来创建水系统对系统中每个节点的污染响应的数据库。在考虑浓度阈值和“注入以来的时间”参数之后,开发了一种系统地挖掘该数据库的过程。最后,使用数据透视表和图形,可以确定监视位置的网络,以在施加条件下有效覆盖系统。

著录项

  • 作者

    Chastain, James R., Jr.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Health Sciences Public Health.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 214 p.
  • 总页数 214
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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