4.5 Article

Using geographic distribution of well-screen depths and hydrogeologic conditions to identify areas of concern for contaminant migration through inactive supply wells

期刊

HYDROGEOLOGY JOURNAL
卷 26, 期 6, 页码 2071-2088

出版社

SPRINGER
DOI: 10.1007/s10040-018-1734-1

关键词

Wellbore leakage; Contamination; Geographic information systems; Screening evaluation; USA

资金

  1. UC Office of the President's Multi-Campus Research Programs and Initiatives through UC Water [MR-15328473]
  2. University of California Water Security and Sustainability Research Initiative
  3. S.D. Bechtel Jr. Foundation through the UC Davis Center for Watershed Sciences

向作者/读者索取更多资源

Contaminant migration through inactive supply wells can negatively affect groundwater quality and the combined effects from groups of such wells may cause greater impacts. Because the number of wells in many basins is often large and the geographic areas involved can be vast, approaches are needed to estimate potential impacts and focus limited resources for investigation and corrective measures on the most important areas. One possibility is to evaluate the geographic distribution of well-screen depths relative to hydrogeologic conditions and assess where contaminant migration through wells may be impacting groundwater quality. This approach is demonstrated for a geographically extensive area in the southern Central Valley of California, USA. The conditions that lead to wells acting as conduits for contaminant migration are evaluated and areas where the problem likely occurs are identified. Although only a small fraction of all wells appear to act as conduits, potential impacts may be significant considering needs to control nonpoint-source pollution and improve drinking water quality for rural residents. Addressing a limited number of areas where contaminant migration rates are expected to be high may cost-effectively accomplish the most beneficial groundwater quality protection and improvement. While this work focuses on a specific region, the results indicate that impacts from groups of wells may occur in other areas with similar conditions. Analyses similar to that demonstrated here may guide efficient investigation and corrective action in such areas with benefits occurring for groundwater quality. Potential benefits may justify expenditures to develop the necessary data for performing the analyses.

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