
Effectiveness of Bank Filtration for Water Supply in Arid Climates: (IHE Delft PhD Thesis Series)
By
Ahmed Ragab Abdelrady Mahmoud (Author)
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About the Author
Ahmed is a post-doctoral researcher at the water management department, TU Delft. He obtained his bachelor degree in chemistry from Aswan University (Egypt), postgraduate diploma in applied environmental geoscience from Assiut University (Egypt), a master of science in water resources management at ITC, University of Twente. He conducted his PhD research at TU Delft and IHE-Delft, focused on development of a management framework for bank filtration technique for water supply in arid environments. Ahmed has participated in several projects in water resources management, including; groundwater modelling, remote sensing for resources management, and modelling of water quality. He also developed a remote-sensing based model (AquaSEBS) to estimate the evaporation rate over fresh and saline water bodies. His research interests include: DNA tracer for hydrological processes, managed aquifer recharge, removal of micropollutants, and groundwater modelling.
More Details
- Contributor: Ahmed Ragab Abdelrady Mahmoud
- Imprint: CRC Press
- ISBN13: 9780367746735
- Number of Pages: 198
- Packaged Dimensions: 170x240mm
- Packaged Weight: 381
- Format: Paperback
- Publisher: Taylor & Francis Ltd
- Release Date: 2020-12-29
- Series: IHE Delft PhD Thesis Series
- Binding: Paperback / softback
- Biography: Ahmed is a post-doctoral researcher at the water management department, TU Delft. He obtained his bachelor degree in chemistry from Aswan University (Egypt), postgraduate diploma in applied environmental geoscience from Assiut University (Egypt), a master of science in water resources management at ITC, University of Twente. He conducted his PhD research at TU Delft and IHE-Delft, focused on development of a management framework for bank filtration technique for water supply in arid environments. Ahmed has participated in several projects in water resources management, including; groundwater modelling, remote sensing for resources management, and modelling of water quality. He also developed a remote-sensing based model (AquaSEBS) to estimate the evaporation rate over fresh and saline water bodies. His research interests include: DNA tracer for hydrological processes, managed aquifer recharge, removal of micropollutants, and groundwater modelling.
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