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Published in: Environmental Earth Sciences 7/2019

01-04-2019 | Original Article

Land subsidence triggered by groundwater withdrawal under hyper-arid conditions: case study from Central Saudi Arabia

Authors: Abdullah Othman, Abotalib Z. Abotalib

Published in: Environmental Earth Sciences | Issue 7/2019

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Abstract

Natural and human-induced groundwater dynamics in hyper-arid aquifers play a crucial role in the evolution of the landscape. The area overlying the Saq Aquifer, in particular the Al-Qassim area within the central part of the Kingdom of Saudi Arabia, has witnessed numerous land deformation (land subsidence and fissures) events throughout the last two decades. An integrated remote sensing and hydrogeologic approach is adapted to identify areas affected by the land deformation and also to better understand the role of human-induced groundwater dynamics in the formation of these deformation features. A fourfold approach was implemented including: (1) conducting field surveys to collect observations and validate the reported deformation features, (2) applying a spatial correlation in a GIS environment for the reported damaged locations together with surface and subsurface geological features and groundwater extraction. (3) extracting the subsidence rates using SBAS radar interferometric technique using ENVISAT data sets, and (4) correlating these subsidence rates spatially and temporally with GRACE mass variations data. The results show that high subsidence rates of − 5 to − 12 mm/year along a northwest–southeast direction coincident with areas witnessing a significant drawdown in the fossil groundwater levels (up to 150 m) and a depletion (−10.1 ± 1.2 mm/year) in GRACE-derived terrestrial water storage. Findings from the present study draw attention to the quick responses of landscapes to human-induced groundwater dynamics under hyper-arid conditions.

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Metadata
Title
Land subsidence triggered by groundwater withdrawal under hyper-arid conditions: case study from Central Saudi Arabia
Authors
Abdullah Othman
Abotalib Z. Abotalib
Publication date
01-04-2019
Publisher
Springer Berlin Heidelberg
Published in
Environmental Earth Sciences / Issue 7/2019
Print ISSN: 1866-6280
Electronic ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-019-8254-8

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