A global-scale two-layer transient groundwater model: Development and application to groundwater depletion

Publication date

2017-04-01

Authors

de Graaf, I. E. M.ISNI 0000000395435236
van Beek, L. P. H.ISNI 0000000117916961
Gleeson, Tom
Moosdorf, Nils
Schmitz, O.ORCID 0000-0002-0493-851XISNI 0000000419437843
Sutanudjaja, E. H.ISNI 0000000393608789
Bierkens, M. F. P.ORCID 0000-0002-7411-6562ISNI 0000000109834798

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Advisors

Supervisors

Document Type

Article
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cc_by

Abstract

Groundwater is the world's largest accessible source of freshwater to satisfy human water needs. Moreover, groundwater buffers variable precipitation rates over time, thereby effectively sustaining river flows in times of droughts and evaporation in areas with shallow water tables. In this study, building on previous work, we simulate groundwater head fluctuations and groundwater storage changes in both confined and unconfined aquifer systems using a global-scale high-resolution (5′) groundwater model by deriving new estimates of the distribution and thickness of confining layers. Inclusion of confined aquifer systems (estimated 6–20% of the total aquifer area) improves estimates of timing and amplitude of groundwater head fluctuations and changes groundwater flow paths and groundwater-surface water interaction rates. Groundwater flow paths within confining layers are shorter than paths in the underlying aquifer, while flows within the confined aquifer can get disconnected from the local drainage system due to the low conductivity of the confining layer. Lateral groundwater flows between basins are significant in the model, especially for areas with (partially) confined aquifers were long flow paths crossing catchment boundaries are simulated, thereby supporting water budgets of neighboring catchments or aquifer systems. The developed two-layer transient groundwater model is used to identify hot-spots of groundwater depletion. Global groundwater depletion is estimated as 7013  km3 (137  km3y−1) over 1960–2010, which is consistent with estimates of previous studies.

Keywords

Water Science and Technology, SDG 6 - Clean Water and Sanitation

Citation

de Graaf, I E M, van Beek, R L P H, Gleeson, T, Moosdorf, N, Schmitz, O, Sutanudjaja, E H & Bierkens, M F P 2017, 'A global-scale two-layer transient groundwater model : Development and application to groundwater depletion', Advances in Water Resources, vol. 102, pp. 53-67. https://doi.org/10.1016/j.advwatres.2017.01.011