4.7 Article

Theory of transient confined-unconfined flow in a confined aquifer considering delayed responses of water table

Journal

JOURNAL OF HYDROLOGY
Volume 608, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jhydrol.2022.127644

Keywords

Transient confined-unconfined flow; Delayed response; Unsaturated drainage; Aquifer anisotropy; Laplace transform; Semi-analytical solution

Funding

  1. National Natural Science Foundation of China [41807197]
  2. Natural Science Foundation of Guangxi [2017GXNSFBA198087, 2018GXNSFAA138042, GuiKeAB17195073]
  3. Hebei High-level Talent Funding Project [B2018003016]

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A semi-analytical solution is developed to study drawdown of transient confined-unconfined flow towards a fully penetrating well in a confined aquifer. The results show that the proposed solution, with the parameter γ introduced, can investigate the delayed responses of drawdown.
A semi-analytical solution is developed for drawdown of transient confined-unconfined flow towards a fully penetrating well in a confined aquifer. The proposed solution considers the aquifer anisotropy and the drainage from the unsaturated zone above the water table in the transient unconfined region. Based on the work by Moench (1995), the parameter of gamma related to vertical hydraulic conductivity, aquifer thickness, specific yield and a delayed coefficient is introduced to investigate the delayed responses of flow behaviours, i.e., drawdown and development of the transient unconfined region. The results indicate that the flow behaviours simulations by the proposed solution are identical to that by Visual-MODFLOW Flex and finite difference method. The drawdown delayed responses occur in the early and intermediate segments, and disappear at the late segment during the transient confined-unconfined conversion. The increasing of the vertical hydraulic conductivity and the delayed coefficient can decrease the drawdown and limit the development of transient unconfined region, thus, and postpone the time of transient confined-unconfined conversion in a radial distance. The release of water by gravity storage nearby the piezometer surface is quick, resulting in an obvious log-log S-shaped drawdown-time curve. As buried depth increases, the effect of artesian storage is more pronounced. This paper provides much-needed insights of drawdown delayed response during the confined-unconfined conversion.

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