Articles | Volume 23, issue 8
https://doi.org/10.5194/hess-23-3305-2019
https://doi.org/10.5194/hess-23-3305-2019
Research article
 | 
12 Aug 2019
Research article |  | 12 Aug 2019

The effect of sediment thermal conductivity on vertical groundwater flux estimates

Eva Sebok and Sascha Müller

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Cited articles

Abu-Hamdeh, N. H. and Reeder, R. C.: Soil Thermal Conductivity: Effects of Density, Moisture, Salt Concentration, and Organic Matter, Soil Sci. Soc. Am. J., 64, 1285–1290, 2000. 
Angers, D. A. and Caron, J.: Plant-induced changes in soil structure: Processes and feedbacks, Biogeochemistry, 42, 55–72, 1998. 
Anibas, C., Fleckenstein, J. H., Volze, N., Buis, K., Verhoeven, R., Meire, P., and Batelaan, O.: Transient or steady-state? Using vertical temperature profiles to quantify groundwater-surface water exchange, Hydrol. Process., 23, 2165–2177, 2009. 
Anibas, C., Buis, K., Verhoeven, R., Meire, P., and Batelaan, O.: A simple thermal mapping method of seasonal patterns of surface water-groundwater interaction, J. Hydrol., 397, 93–104, 2011. 
Briggs, M. A., Lautz, L. K., and McKenzie, J. M.: A comparison of fibre-optic distributed temperature sensing to traditional methods of evaluating groundwater inflow to streams, Hydrol. Process., 25, 1277–1290, https://doi.org/10.1002/hyp.8200, 2011. 
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Short summary
Exchange fluxes between groundwater and surface waters can be quantified using temperature measurements from the upper sediment layers of streams and lakes assuming the thermal properties of sediments. This study quantified the natural variabiilty in sediment thermal conductivity in the vertical direction at the bed of surface waters and showed that fluxes can change by up to +/-75 % depending on using standard literature values or in situ measurements for sediment thermal conductivity.