Please use this identifier to cite or link to this item: https://dspace.univ-ouargla.dz/jspui/handle/123456789/41460
Title: Integration of Remote Sensing, Machine Learning, and Electrical Resistivity Tomography for Soil Salinity Mapping in Ouargla, Southeastern Algeria
Authors: Nemer, Zoubida
Zeddouri, Aziez
Zouaouid, Taha
Maarouf, Youcef
Keywords: soil salinity
remote sensing
Sentinel-2
Google Earth Engine
spectral indices
K-Means clustering
Electrical Resistivity Tomography
Ouargla
Algeria
arid environments
Issue Date: 2026
Abstract: Soil salinity is one of the most pervasive land-degradation processes in arid and hyperarid environments. In the Ouargla region of southeastern Algeria, salinisation driven by shallow artesian water tables, intensive irrigation, and extreme evapotranspiration rates severely threatens agricultural sustainability and ecosystem integrity. This thesis presents an integrated methodology combining multitemporal Sentinel-2 satellite remote sensing processed in Google Earth Engine (GEE), unsupervised machine learning classification (K-Means, k = 5), and Electrical Resistivity Tomography (ERT) field surveys to produce validated soil salinity maps over a 34 km2 test area centred on Hassi El Ghanami, Ouargla wilaya. Twelve spectral indices were computed from four annual dry-season and wet-season Sentinel2 composites (2022 to 2025), assembled into a 60-band multi-temporal feature stack, and classified into five salinity zones ranging from non-saline palmeraie to active sabkha. Two ERT profiles across contrasting salinity classes provide subsurface geophysical validation of the satellite classification. Temporal NDSI analysis reveals that irrigated agricultural plots, not the open sabkha background, are the primary zones of active secondary salinisation. The integrated approach is cost-effective, reproducible, and directly transferable to comparable hyperarid oasis environments across the MENA region.
Description: PEOPLE'S DEMOCRATIC REPUBLIC OF ALGERIA Ministry of Higher Education and Scientific Research UNIVERSITY OF KASDI MERBAH OUARGLA Faculty of Hydrocarbons, Renewable Energies, Earth & Universe Sciences Department of Earth & Universe Sciences MASTER'S THESIS Submitted in fulfilment of the requirements for the degree of Master of Science in Applied Geophysics
URI: https://dspace.univ-ouargla.dz/jspui/handle/123456789/41460
Appears in Collections:Département des Sciences de la terre et de l’Univers - Master

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