4.7 Article

Fluctuations of electrical conductivity as a natural tracer for bank filtration in a losing stream

Journal

ADVANCES IN WATER RESOURCES
Volume 33, Issue 11, Pages 1296-1308

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.advwatres.2010.02.007

Keywords

Bank filtration; Travel time; Electrical conductivity; Deconvolution; Diurnal fluctuations; River-groundwater interaction

Funding

  1. Competence Center Environment and Sustainability (CCES)

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A key parameter used in the assessment of bank filtration is the travel time of the infiltrated river water during the passage through groundwater. We analyze time series of electrical conductivity (EC) in the river and adjacent groundwater observation wells to investigate travel times of young hyporheic groundwater in adjoining channelized and restored sections of River Thur in North-East Switzerland. To quantify mixing ratios and mean residence times we perform cross-correlation analysis and non-parametric deconvolution of the EC time series. Measurements of radon-222 in the groundwater samples validate the calculated residence times. A simple relationship between travel time and distance to the river has not been observed. Therefore, we speculate that the lateral position and depth of the thalweg as well as the type of bank stabilization might control the infiltration processes in losing rivers. Diurnal oscillations of EC observed in the river and in nearby observation wells facilitate analyzing the temporal variation of infiltration. The diurnal oscillations are particularly pronounced in low flow situations, while the overall EC signal is dominated by individual high-flow events. Differences in travel times derived from diurnal and overall EC signals thus reflect different infiltration regimes. (C) 2010 Elsevier Ltd. All rights reserved.

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