Groundwater for Sustainable Development 11 (2020) 100481
10
Moghaddam, H.K., Moghaddam, H.K., et al., 2019. Developing comparative mathematic
models, BN and ANN for forecasting of groundwater levels. Groundwater for
Sustainable Development 9, 100237.
Najib, S., Grozavu, A., et al., 2012. Application of the method GALDIT for the
cartography of groundwaters vulnerability: aquifer of Chaouia coast (Morocco).
Analele stiintifice ale Universitatii" Alexandru Ioan Cuza" din Iasi-seria Geografie 58
(2), 77–88.
Niazi, S., 2007. Evaluation des impacts des changements climatiques et de l’´ el´ evation du
niveau de la mer sur le littoral de T´ etouan (M´ editerran´ ee occidentale du Maroc):
Vuln´ erabilit´ e et Adaptation (Th` ese de doctorat).
Revelle, R., 1941. Criteria for recognition of the sea water in ground-waters. Eos,
Transactions American Geophysical Union 22 (3), 593–597.
Saidi, S., Bouri, S., et al., 2011. Assessment of groundwater risk using intrinsic
vulnerability and hazard mapping: application to Souassi aquifer, Tunisian Sahel.
Agric. Water Manag. 98 (10), 1671–1682.
Szczypta, C., 2012. Hydrologie spatiale pour le suivi des s´ echeresses du bassin
m´ editerran´ een.
Tadrist, N., Debauche, O., et al., 2016. Impact de l’´ erosion sur l’envasement des barrages,
la recharge des nappes phr´ eatiques cˆ oti` eres et les intrusions marines dans la zone
semi-aride m´ editerran´ eenne: cas du barrage de Boukourdane (Alg´ erie).
Biotechnologie, Agronomie, Soci´ et´ e et Environnement 20 (4), 453–467.
Tasnim, Z., Tahsin, S., 2016. Application of the method of GALDIT for groundwater
vulnerability assessment: a case of South Florida. Asian Journal of Applied Science
and Engineering 5 (1), 27–40.
Trabelsi, N., Triki, I., et al., 2016. Aquifer vulnerability and seawater intrusion risk using
GALDIT, GQI SWI and GIS: case of a coastal aquifer in Tunisia. Environmental earth
sciences 75 (8), 669.
Varnes, D.J., 1984. Landslide Hazard Zonation: a Review of Principles and Practice.
N. Amarni et al.
10
Moghaddam, H.K., Moghaddam, H.K., et al., 2019. Developing comparative mathematic
models, BN and ANN for forecasting of groundwater levels. Groundwater for
Sustainable Development 9, 100237.
Najib, S., Grozavu, A., et al., 2012. Application of the method GALDIT for the
cartography of groundwaters vulnerability: aquifer of Chaouia coast (Morocco).
Analele stiintifice ale Universitatii" Alexandru Ioan Cuza" din Iasi-seria Geografie 58
(2), 77–88.
Niazi, S., 2007. Evaluation des impacts des changements climatiques et de l’´ el´ evation du
niveau de la mer sur le littoral de T´ etouan (M´ editerran´ ee occidentale du Maroc):
Vuln´ erabilit´ e et Adaptation (Th` ese de doctorat).
Revelle, R., 1941. Criteria for recognition of the sea water in ground-waters. Eos,
Transactions American Geophysical Union 22 (3), 593–597.
Saidi, S., Bouri, S., et al., 2011. Assessment of groundwater risk using intrinsic
vulnerability and hazard mapping: application to Souassi aquifer, Tunisian Sahel.
Agric. Water Manag. 98 (10), 1671–1682.
Szczypta, C., 2012. Hydrologie spatiale pour le suivi des s´ echeresses du bassin
m´ editerran´ een.
Tadrist, N., Debauche, O., et al., 2016. Impact de l’´ erosion sur l’envasement des barrages,
la recharge des nappes phr´ eatiques cˆ oti` eres et les intrusions marines dans la zone
semi-aride m´ editerran´ eenne: cas du barrage de Boukourdane (Alg´ erie).
Biotechnologie, Agronomie, Soci´ et´ e et Environnement 20 (4), 453–467.
Tasnim, Z., Tahsin, S., 2016. Application of the method of GALDIT for groundwater
vulnerability assessment: a case of South Florida. Asian Journal of Applied Science
and Engineering 5 (1), 27–40.
Trabelsi, N., Triki, I., et al., 2016. Aquifer vulnerability and seawater intrusion risk using
GALDIT, GQI SWI and GIS: case of a coastal aquifer in Tunisia. Environmental earth
sciences 75 (8), 669.
Varnes, D.J., 1984. Landslide Hazard Zonation: a Review of Principles and Practice.
N. Amarni et al.
