Open Access
| Issue |
E3S Web Conf.
Volume 708, 2026
7th International Conference on Smart Applications and Water Information Systems: “Intelligent Systems, Geospatial Technologies and Modeling for the Sustainable Management of Water Resources” (SAWIS 2025)
|
|
|---|---|---|
| Article Number | 02009 | |
| Number of page(s) | 9 | |
| Section | Water Quality, Treatment, and Environmental Processes | |
| DOI | https://doi.org/10.1051/e3sconf/202670802009 | |
| Published online | 30 April 2026 | |
- Mishra, S.K.; Tyagi, J.V.; Singh, V.P. Comparison of infiltration models. Hydrological processes 2003, 17, 2629-2652. [Google Scholar]
- Shanafield, M.; Cook, P.G. Transmission losses, infiltration and groundwater recharge through ephemeral and intermittent streambeds: A review of applied methods. Journal of Hydrology 2014, 511, 518-529. [Google Scholar]
- Batlle-Aguilar, J.; Xie, Y.; Cook, P.G. Importance of stream infiltration data for modelling surface water-groundwater interactions. Journal of Hydrology 2015, 528, 683-693. [Google Scholar]
- El Mezouary, L.; Kharrou, M.H.; Hadri, A.; Elfarchouni, A.; Fakir, Y.; Bouchaou, L.; Chehbouni, A. Advanced hydrogeological modeling to reduce uncertainty in groundwater recharge estimation in semi-arid aquifers: Case of Al-Haouz-Mejjate aquifer in Morocco. Chemosphere 2025, 392, 144743. [Google Scholar]
- Mishra, S.K.; Kumar, S.R.; Singh, V.P. Calibration and validation of a general infiltration model. Hydrological Processes 1999, 13, 1691-1718. [Google Scholar]
- Draoui, Y.; Lahlou, F.; Chao, J.; El Mezouary, L.; Al Mazini, I.; El Hamidi, M.J. Quantification of Surface Water-Groundwater Exchanges by GIS Coupled with Experimental Gauging in an Alluvial Environment. International Journal of Advanced Computer Science and Applications 2021, 12. [Google Scholar]
- El Mrabet, E.; El Mezouary, L.; El Mansouri, B. A study of water infiltration basin and clogging using column experiments. In Proceedings of the E3S Web of Conferences, 2021; p. 04005. [Google Scholar]
- Stolte, J. Effects of land use and infiltration behaviour on soil conservation strategies ; Wageningen University and Research: 2003. [Google Scholar]
- Zadeh, K.S.; Shirmohammadi, A.; Montas, H.J.; Felton, G. Evaluation of infiltration models in contaminated landscape. Journal of Environmental Science and Health, Part A 2007, 42, 983-988. [Google Scholar]
- De Rooij, G. Modeling fingered flow of water in soils owing to wetting front instability: a review. Journal of Hydrology 2000, 231, 277-294. [Google Scholar]
- Heber Green, W.; Ampt, G. Studies on Soil Phyics. Journal of Agricultural Science 1911, . [Google Scholar]
- Philip, J. The theory of infiltration: 5. The influence of the initial moisture content. Soil Science 1957, 84, 329-340. [Google Scholar]
- Kostiakov, A.N. On the dynamics of the coefficient of water-percolation in soils and on the necessity of studying it from a dynamic point of view for purposes of amelioration. Trans. 6th Cong. International. Soil Science, Russian Part A 1932, 17-21. [Google Scholar]
- Horton, R. The infiltration-theory of surface-runoff. Eos, Transactions American Geophysical Union 1940, 21, 541-541. [Google Scholar]
- Wang, Z.; Feyen, J.; van Genuchten, M.T.; Nielsen, D.R. Air entrapment effects on infiltration rate and flow instability. Water Resources Research 1998, 34, 213222. [Google Scholar]
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