Vulnerability Of A Tunisian Coastal Aquifer To Seawater Intrusion: Insights From The Galdit Model
2022
Articles Scientifiques Et Publications
Génie Eléctrique Et Eléctronique

École Nationale Supérieure D’hydraulique - Alger

Z
Zghibi, Adel
M
Meringue, Amira
M
Mansaray, Abubakarr

Résumé: The Korba region in northwestern Tunisia has a coastal aquifer that is impacted by intensive irrigation, urban expansion, and sensitivity to SWI. We assessed the vulnerability extent of Korba’s GW to SWI. We utilized a parametric model for GW vulnerability assessment, the GALDIT, which considers six parameters to determine SWI effects. The GALDIT map has four rating categories (≥7.5, 7.5–5, 5–2.5, and <2.5), representing very high, high, moderate, and low vulnerability, respectively. Most of the region was found to be highly vulnerable (44.2% of the surface area), followed by areas characterized by very high (20.3%) and moderate (19.3%) vulnerability. Only 16.2% was found to have low vulnerability. A parameter sensitivity analysis showed that distance from shore and depth of GW represent the determining factors for SWI with variation index values of 24.12 and 18.02%, respectively. Inland advancement of seawater is causing GW salinity to rise, as indicated by a strong Pearson correlation coefficient of 0.75 between SWI indices and the electrical conductivity. Suitable areas for artificial recharge were mainly distributed in the alluvial plains, with a total area of 32.85 km2. Inhibiting SWI requires about 11.31 MCM of artificial recharge in the two most suitable recharge zones in the region.

Mots-clès:

groundwater (gw) vulnerability index
galdit index
parameters sensitivity
artificial recharge
seawater intrusion (swi)
korba aquifer
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