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井脆弱性:一种用于水源保护的定量方法。

Well vulnerability: a quantitative approach for source water protection.

作者信息

Frind E O, Molson J W, Rudolph D L

机构信息

Department of Earth Sciences, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1.

出版信息

Ground Water. 2006 Sep-Oct;44(5):732-42. doi: 10.1111/j.1745-6584.2006.00230.x.

Abstract

The concept of vulnerability of drinking water sources is reviewed, and a quantitative approach for assessing well vulnerability for complex three-dimensional ground water systems is developed. The approach focuses on the relative expected impact of potential contaminant sources at unknown locations within a well capture zone, providing relative measures of intrinsic well vulnerability, including the expected times of arrival of a contaminant, the dispersion-related reduction in concentration, the time taken to breach a certain quality objective, and the corresponding exposure times. Thus, the result of the analysis includes the usual advective travel time information used in conventional wellhead protection analysis, plus a set of selected quantitative measures expressing the expected impact. The technique is based on adjoint theory and combines forward- and backward-in-time transport modeling using a standard numerical flow and transport code. The methodology is demonstrated using the case study of a complex glacial multiaquifer system in Ontario. The new approach will be useful in helping water managers develop more physically based and quantitative wellhead protection strategies.

摘要

本文回顾了饮用水源脆弱性的概念,并开发了一种用于评估复杂三维地下水系统中水井脆弱性的定量方法。该方法侧重于潜在污染源在水井捕获区内未知位置的相对预期影响,提供内在水井脆弱性的相对度量,包括污染物的预期到达时间、与扩散相关的浓度降低、突破特定质量目标所需的时间以及相应的暴露时间。因此,分析结果包括传统井口保护分析中使用的平流运移时间信息,以及一组表示预期影响的选定定量度量。该技术基于伴随理论,使用标准的数值水流和输运代码结合了正向和反向时间输运建模。通过安大略省一个复杂的冰川多含水层系统的案例研究对该方法进行了演示。新方法将有助于水资源管理者制定更基于物理原理和定量的井口保护策略。

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