Literature DB >> 22320934

Changes in entrapped gas content and hydraulic conductivity with pressure.

Maricris Marinas1, James W Roy, James E Smith.   

Abstract

Water table fluctuations continuously introduce entrapped air bubbles into the otherwise saturated capillary fringe and groundwater zone, which reduces the effective (quasi-saturated) hydraulic conductivity, K(quasi), thus impacting groundwater flow, aquifer recharge and solute and contaminant transport. These entrapped gases will be susceptible to compression or expansion with changes in water pressure, as would be expected with water table (and barometric pressure) fluctuations. Here we undertake laboratory experiments using sand-packed columns to quantify the effect of water table changes of up to 250 cm on the entrapped gas content and the quasi-saturated hydraulic conductivity, and discuss our ability to account for these mechanisms in ground water models. Initial entrapped air contents ranged between 0.080 and 0.158, with a corresponding K(quasi) ranging between 2 and 6 times lower compared to the K(s) value. The application of 250 cm of water pressure caused an 18% to 26% reduction in the entrapped air content, resulting in an increase in K(quasi) by 1.16 to 1.57 times compared to its initial (0 cm water pressure) value. The change in entrapped air content measured at pressure step intervals of 50 cm, was essentially linear, and could be modeled according to the ideal gas law. Meanwhile, the changes in K(quasi) with compression-expansion of the bubbles because of pressure changes could be adequately captured with several current hydraulic conductivity models. © Ground Water 2012 and © Her Majesty the Queen in Right of Canada 2012. Ground Water
© 2012, National Ground Water Association.

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Year:  2012        PMID: 22320934     DOI: 10.1111/j.1745-6584.2012.00915.x

Source DB:  PubMed          Journal:  Ground Water        ISSN: 0017-467X            Impact factor:   2.671


  1 in total

1.  Quasi-Saturated Layer: Implications for Estimating Recharge and Groundwater Modeling.

Authors:  Roger D Gonçalves; Elias H Teramoto; Bruno Z Engelbrecht; Miguel A Alfaro Soto; Hung K Chang; Martinus Th van Genuchten
Journal:  Ground Water       Date:  2019-07-05       Impact factor: 2.671

  1 in total

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