nerc.ac.uk

Simulation of Complex Groundwater Flow Processes in Low‐Fidelity Radial Flow Model Using a Mathematical Representation of the Variation of Vertical Hydraulic Conductivity With Depth

Mansour, Majdi ORCID: https://orcid.org/0000-0003-3058-8864; Christelis, Vasileios ORCID: https://orcid.org/0000-0003-4345-2528; Upton, Kirsty; Hughes, Andrew ORCID: https://orcid.org/0000-0001-9940-1813. 2024 Simulation of Complex Groundwater Flow Processes in Low‐Fidelity Radial Flow Model Using a Mathematical Representation of the Variation of Vertical Hydraulic Conductivity With Depth. Hydrological Processes, 38 (12), e70039. 10.1002/hyp.70039

Before downloading, please read NORA policies.
[thumbnail of Open Access Paper]
Preview
Text (Open Access Paper)
Hydrological Processes - 2024 - Mansour - Simulation of Complex Groundwater Flow Processes in Low‐Fidelity Radial Flow.pdf - Published Version
Available under License Creative Commons Attribution 4.0.

Download (2MB) | Preview

Abstract/Summary

Numerical groundwater models are key tools to calculate the deployable output from pumped boreholes. Their calibration requires undertaking multiple runs to optimise the parameter values. To maintain computational efficiency, the hydrogeological complexity of fractured and weathered aquifers is often represented in numerical models using a simplified approach consisting of a mathematical equation that describes the vertical variation of horizontal hydraulic conductivity () value with depth. In this article, we present the inclusion of the variation of the vertical hydraulic conductivity () with depth to a radial flow model. We derive the mathematical equation controlling the flow vertically between the numerical nodes. We show that the inclusion of variation with depth have a limited impact on the shape of the time drawdown curve at the early times of a pumping test but its significance is higher at later times. This also has a measurable impact on the water level inside the pumped borehole especially when the variations of both and are accounted for. We use a simple linear variation of with depth but the method is also applicable to complex profile of aquifer heterogeneity if this complexity can be represented using polynomial approximation. This illustrates the applicability of the proposed method to a wide range of weathered aquifer settings.

Item Type: Publication - Article
Digital Object Identifier (DOI): 10.1002/hyp.70039
ISSN: 0885-6087
Additional Keywords: GroundwaterBGS
Date made live: 09 Jan 2025 16:36 +0 (UTC)
URI: https://nora.nerc.ac.uk/id/eprint/538691

Actions (login required)

View Item View Item

Document Downloads

Downloads for past 30 days

Downloads per month over past year

More statistics for this item...