A platform for research: civil engineering, architecture and urbanism
Impacts of Desalinated and Recycled Water in the Abu Dhabi Surficial Aquifer
In Abu Dhabi, one of the most arid regions in the world, in recent decades, desalinated water has been identified as a prime solution in solving the water demand issues. In this study, a three-dimensional coupled density-dependent flow and solute transport model was set up in order to study the effect of the artificial recharge using desalinated water and the influence of nonconventional water with a salt concentration in the range 0.1–2 g/L The results confirm that this region demands the adoption of a more rational use of irrigation water or additional usage of desalinated water and recycled water together with optimizing groundwater pumping at locations that are vulnerable to further quality degradation and depletion. The long-term storage of desalinated freshwater with a maximum radial distance of 653 m in the dune surface is ensured with the formation of the transition zone, and change in the groundwater head up to 5 km. The maximum recovery obtained by immediate recovery is 70%. The study expresses the long-term feasibility of desalinated freshwater storage and the need for further management practices in quantifying the contribution of desalinated and recycled water for agriculture activities which might have improved groundwater quality and increased hydraulic head at some locations.
Impacts of Desalinated and Recycled Water in the Abu Dhabi Surficial Aquifer
In Abu Dhabi, one of the most arid regions in the world, in recent decades, desalinated water has been identified as a prime solution in solving the water demand issues. In this study, a three-dimensional coupled density-dependent flow and solute transport model was set up in order to study the effect of the artificial recharge using desalinated water and the influence of nonconventional water with a salt concentration in the range 0.1–2 g/L The results confirm that this region demands the adoption of a more rational use of irrigation water or additional usage of desalinated water and recycled water together with optimizing groundwater pumping at locations that are vulnerable to further quality degradation and depletion. The long-term storage of desalinated freshwater with a maximum radial distance of 653 m in the dune surface is ensured with the formation of the transition zone, and change in the groundwater head up to 5 km. The maximum recovery obtained by immediate recovery is 70%. The study expresses the long-term feasibility of desalinated freshwater storage and the need for further management practices in quantifying the contribution of desalinated and recycled water for agriculture activities which might have improved groundwater quality and increased hydraulic head at some locations.
Impacts of Desalinated and Recycled Water in the Abu Dhabi Surficial Aquifer
Sadhasivam Sathish (author) / Claudia Cherubini (author) / Nicola Pastore (author) / Concetta I. Giasi (author) / Dimitra Rapti (author)
2021
Article (Journal)
Electronic Resource
Unknown
Metadata by DOAJ is licensed under ​CC BY-SA 1.0
Low Trihalomethane Formation during Managed Aquifer Recharge with Chlorinated Desalinated Water
DOAJ | 2020
|Desalinated versus recycled water: Public perceptions and profiles of the accepters
Online Contents | 2009
|Indirect economic impacts in water supplies augmented with desalinated water
Online Contents | 2010
|Desalinated versus recycled water: Public perceptions and profiles of the accepters
Online Contents | 2009
|Indirect economic impacts in water supplies augmented with desalinated water
Online Contents | 2010
|