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Analysis and Mapping of Water Erosion Vulnerability Using GIS for the Mghila Watershed, Northwest of Algeria Cover

Analysis and Mapping of Water Erosion Vulnerability Using GIS for the Mghila Watershed, Northwest of Algeria

Open Access
|Jul 2023

References

  1. Adamou S. N., Gourfi A., Touré A. A., Daoudi L. (2022) Water erosion in southwestern Niger: Impacts of natural and anthropogenic factors on soil loss [Érosion hydrique au Sud-Ouest du Niger: Impacts des facteurs naturels et anthropiques sur les pertes en sols], Géomorphologie: Relief, Processus, Environnement, https://doi.org/10.4000/geomorphologie.16744.
  2. Afera H., Asirat T., Ermias S., Mihret D. (2018) Erosion Sensitivity Mapping Using GIS and Multi-Criteria Decision Approach in Ribb Watershed Upper Blue Nile, Ethiopia, International Journal of Energy and Environmental Science, 3 (6), 99–111. doi:10.11648/j.ijees.20180306.11.
  3. Bensekhria A.; Bouhata R. (2022) Assessment and Mapping Soil Water Erosion Using RUSLE Approach and GIS Tools: Case of Oued el-Hai Watershed, Aurès West, Northeastern of Algeria, ISPRS Int. J. Geo-Inf., 11, 84, https://doi.org/10.3390/ijgi11020084.
  4. Bilal A., Ahsen M., Wesam S. A., Muhammad A. M., Talha J., Ahmed Z. (2021) Soil erosion susceptibility mapping using a GIS-based multi-criteria decision approach: Case of district Chitral, Pakistan, Ain Shams, Engineering Journal, 12 (2), 1637–1649, ISSN 2090-4479, https://doi.org/10.1016/j.asej.2020.09.015.
  5. Drzewiecki W., W¦»yk P., Pierzchalski M., Szafra«ska, B. (2013) Quantitative and Qualitative Assessment of Soil Erosion Risk in Małopolska (Poland), Supported by an Object-Based Analysis of High-Resolution Satellite Images, Pure and Applied Geophysics, SpringerLink. https://doi.org/10.1007/s00024-013-0669-7.
  6. Elahcene O., Terfous A., Remini B., Ghenaim A., Poulet J.-B. (2013) Study of sedimentary dynamics in the watershed of Oued Bellah (Algeria) [Etude de la dynamique sédimentaire dans le bassin versant de l’Oued Bellah (Algérie)], 58 (1), 224–236, http://dx.doi.org/10.1080/02626667.2012.742530.
  7. Khanchoul K., Boukhrissa Z. E. A., Acidi A., Altschul R. (2012) Estimation of suspended sediment transport in the Kebir drainage basin, Algeria, Quaternary International, 262, 25–31, DOI:10.1016/J.QUAINT.2010.08.016.
  8. Morsli B., Mazour M., Mededjel N., Hamoudi A., Roose E. (2004) Influence of land use on the risks of runo and erosion on the semi-arid slopes of northwestern Algeria [Influence de l’utilisation des terres sur les risques de ruissellement et d’érosion sur les versants semi-arides du nord-ouest de l’Algérie], Sécheresse, 15 (2), 96–104.
  9. Mosaid H., Barakat A., Bustillo V., Rais J. (2022) Modeling and mapping of soil water erosion risks in the Srou basin (Middle Atlas, Morocco) using the EPM model, GIS and magnetic susceptibility, Journal of Landscape Ecology, 15 (1), 126–147, https://doi.org/10.2478/jlecol-2022-0007.
  10. Mostephaoui T., Merdas S., Sakaa B., Hanafi M., Benazzouz, M. (2013) Mapping of water erosion risks by applying the universal soil loss equation using a geographic information system in the watershed of Al Hamel (Boussaada) Algeria [Cartographie des risques d’érosion hydrique par l’application de l’equation universelle de pertes en sol a l’aide d’un systeme d’information geographique dans le bassin versant d’Al Hamel (Boussaada) Algerie], Journal Algérien des Régions Arides, 12 (1), 131–147, https://www.asjp.cerist.dz/en/article/76912.
  11. Roose E. (1977) Erosion and runo in West Africa, twenty years of measurements in experimental plots [Erosion et ruissellement en Afrique de l’Ouest, vingt années de mesures en parcelles expérimentales], Paris: ORSTOM, 108 p. (Travaux et Documents de l’ORSTOM; 78). ISBN 2-7099-0480-2.
  12. Tadrist, N., Debauche, O., Xanthoulis, D. (2016) mpact of erosion on dam siltation, coastal ground-water recharge and marine intrusions in the semi-arid Mediterranean zone: Case of the Boukour-dane dam (Algeria) [Impact de l’érosion sur l’envasement des barrages, la recharge des nappes phréatiques côtières et les intrusions marines dans la zone semi-aride méditerranéenne: Cas du barrage de Boukourdane (Algérie)], Biotechnologie, Agronomie, Socieetë et Environnement, 20 (4), DOI:10.25518/1780-4507.13281.
  13. Touaibia, B. (2010) Problems of erosion and solid transport in Northern Algeria [Problématique de l’érosion et du transport solide en Algérie septentrionale], Sécheresse, 21 (4), 333–335, doi: 10.1684/sec.2010.0281.
  14. Touahir, S., Asri, A., Remini, B., Saad, H. (2018) Prediction of water erosion in the watershed of Oued Zeddine and siltation of the Ouled Mellouk dam (North-West Algeria) [Prédiction de l’érosion hydrique dans le bassin versant de l’Oued Zeddine et de l’envasement du barrage Ouled Mellouk (Nord-Ouest Algérien)], Géomorphologie: Relief, Processus, Environnement, 24 (2), 167–182. https://doi.org/10.4000/geomorphologie.12083.
DOI: https://doi.org/10.2478/heem-2023-0005 | Journal eISSN: 2300-8687 | Journal ISSN: 1231-3726
Language: English
Page range: 71 - 87
Submitted on: Feb 20, 2023
Published on: Jul 5, 2023
Published by: Polish Academy of Sciences, Institute of Hydro-Engineering
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2023 Abdelkader Ratiat, Ali Haddad, Ilham Bouaichi, Chahrazed Naziha Matene, published by Polish Academy of Sciences, Institute of Hydro-Engineering
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.