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A device for measuring groundwater velocity in the capillary fringe.

机译:一种用于测量毛细边缘中地下水流速的设备。

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摘要

Groundwater flow in the capillary fringe is rarely measured during hydrogeological studies because of the difficulties associated with investigating this region. Previous research using a point velocity probe (PVP) to investigate groundwater velocity below the water table suggested that the PVP may also be capable of measuring groundwater velocity within the capillary fringe. The earlier PVP was redesigned for this study to allow for groundwater velocity data to be collected remotely. Using this system, groundwater velocity in the capillary fringe was investigated under field and laboratory conditions. Field experiments to investigate horizontal flow in the capillary fringe were conducted either by collecting vertical velocity profiles across the water table, or by holding the probe stationary and allowing seasonal recharge to move the capillary fringe and water table past the probe. Laboratory experiments were conducted in a controlled flow tank that simulated regions of an aquifer up to 85 cm above the water table.;The redesigned PVP performed well as a remote system and provided velocity measurements up to 12 cm above the water table under field conditions. These values were consistent with those measured below the water table. In the laboratory, under conditions of drainage, groundwater velocity measurements in the capillary fringe consistent with values below the water table were measured up to 44 cm above the water table. The ability to measure horizontal flow of groundwater in the capillary fringe may open up new avenues for research in the study of contaminant transport in phreatic aquifers.
机译:在水文地质研究过程中,由于研究该地区的困难,很少能测量毛细管边缘的地下水流量。以前使用点速度探针(PVP)来调查地下水位以下的地下水速度的研究表明,PVP可能还能够测量毛细边缘内的地下水速度。较早的PVP已针对该研究进行了重新设计,以允许远程收集地下水流速数据。使用该系统,在野外和实验室条件下研究了毛细条纹中的地下水速度。通过收集整个地下水位的垂直速度分布图,或通过保持探头静止并允许季节性补给将毛细管条纹和地下水位移过探头,进行了研究毛细管边缘水平流动的现场实验。在可控流量罐中进行了实验室实验,该流量罐模拟了地下水位最上方85厘米的含水层区域。重新设计的PVP在远程系统中表现良好,并在野外条件下提供了距地下水位最上方12厘米的速度测量值。这些值与地下水位以下测得的值一致。在实验室中,在排水条件下,毛细边缘中地下水流速的测量值与地下水位以下的值一致,最高测量值高于地下水位44 cm。测量毛细带中地下水水平流动的能力可能为研究潜水含水层中污染物的运移开辟新的途径。

著录项

  • 作者

    Berg, Steven J.;

  • 作者单位

    University of Waterloo (Canada).;

  • 授予单位 University of Waterloo (Canada).;
  • 学科 Geodesy.;Hydrology.
  • 学位 M.Sc.
  • 年度 2007
  • 页码 84 p.
  • 总页数 84
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:39:07

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