K. Atkinston, A. W. Herbert, C. P. Jackson, and P. C. Robinson, , p.11364, 1985.

W. R. Aufricht, Salt Characteristics As They Affect Storage of Hydrocarbons, Society of Petroleum Engineers, vol.13, issue.08, pp.733-738, 1961.

M. Ben-refifa, E. Canot, L. Guellouz, and R. Bouhlila, Salt dome dissolution: Coupling flow, transport and geochemistry, Tendances dans les ApplicationsMathématiques en Tunisie, pp.475-480, 2017.

M. Ben-refifa, E. Canot, L. Guellouz, and R. Bouhlila, Modeling of Coupled Processes: Flow, Transport and Geochemistry, Application to the Dissolution of Salt Dome, Journal of Hydrogeology & Hydrologic Engineering, vol.5, issue.4, 2016.

O. Bouc and S. Auclair, Critéres de securité pour les analogues, 2007.

R. Bouhlila, Ecoulements, Transports et Réactions Géochimiques Couplés Dans le milieu Poreux. Tunisie: Ecole National d'Ingenieur de Tuins, 1999.

H. J. Diersch and O. Kolditz, Coupled groundwater flow and transport:2.Thermoline and 3D convection Systems, Advences in water Ressource, vol.21, pp.401-425, 1998.

F. Djahanguiri and S. Matthews, Geotechnical considerations for design of a nuclear repository in bedded salt in the U.S, Sixth International Symposium on Salt, pp.561-584, 1985.

D. Evans, The Millennium Atlas: Petroleum Geology of the Central and Northern North Sea, 2003.

V. Freedman and M. Ibaraki, Effects of chemical reactions onon density-dependent fluid flow: on the numerical formulation and the development of instabilities, Advances in Water Resources, vol.25, issue.4, pp.439-453, 2002.

G. Fries, Étude de l'éventualité de création d'un dôme. Direction générale Science, recherche et développement. LUXEMBOURG: COMMISSION DES COMMUNAUTÉS EUROPÉENNES, 1987.

M. Ghoryechi and X. Daupley, Devenir à long terme d'exploitation abandonnées de sel en France. Colloque International Après-mine, 2003.

P. Hart, R. L. Jhonson, T. J. Nicholson, E. Quinn, and R. Wrigth, Survey of salt dome investigations, 1981.

W. Haynes, CRC Handbook of Chemistry and Physics, vol.94, 2014.

A. W. Herbert, C. P. Jackson, and D. A. Lever, Coupled groundwater flow and solute transport with fluid density strongly dependent upon concentration, Water Ressources Research, vol.34, issue.0, pp.1781-1795, 1988.

P. Kelsall and J. W. Nelson, Geologic and ingeneering caracterizations of gulf region salt domes applied to underground storage and mining, sixth international symposium on salt, vol.1, 1985.

W. Kloppmann, P. Negrel, J. Casanova, H. Klinge, K. Schelkes et al., Halite dissolution derived brines in the vicinity of a Permian salt dome (N German Basin). Evidence from boron, strontium, oxygen, and hydrogen isotopes, Geochimica et Cosmochimica Acta, vol.65, issue.22, pp.4087-4101, 2001.

L. F. Konikow, W. E. Sanford, and P. J. Campbell, Canstant concentration boundary conditions:lessons from the hydrocoin variable density groundwater benchmark problem, Water Ressources Reaserch, vol.33, issue.10, pp.2253-2261, 1997.

E. Laabidi and R. Bouhlila, Nonstationary porosity evolution in mixing zone in coastal carbonate aquifer using an alternative modeling approach. Environmental Science and Pollution, p.22, 2015.

A. Larsson, The international projects INTRACOIN, HYDROCOIN and INTRAVAL, Advances in Water Resources, vol.15, issue.01, pp.85-87, 1992.

P. Massal, Rheologie,proprieté physiques de sel gemme et phenoménes de migration dans le sel, Orléans: Bureau de Recherche geologiques et minière, BRGM, 1988.

O. N. Michelsen, Jurassic lithostratigraphy and stratigraphic development onshore and offshore Denmark. Geological Survey of Denmark and Greenland. Denmark : The Jurassic of Denmark and Greenland, 2003.

C. Monnin, An ion interaction model for the volumetric properties of natural waters: Density of the solution and partial molal volumes of electrolytes to high concentrations at 25°C, Geochimica et Cosmochimica Acta, vol.53, issue.6, pp.1177-1188, 1989.
URL : https://hal.archives-ouvertes.fr/hal-00663049

F. Oecd, The international Hydrocoin Project,Level 1,code verification. Paris: Rep.71617. Peach, Faculteit Aardwetenschappen der Rijksuniversiteit te, pp.1-238, 1988.

J. Philibert, Diffusion et transport de matière dans les solides, vol.01, p.9782868830043, 1985.

V. Ranghathan and H. S. Jeffery, Density-driven Groundwater flow near salt domes, Chemical Geology, pp.173-188, 1988.

M. Reeves, D. S. Ward, N. D. Johns, and R. M. Cranwell, Theory and implementation of SWIFT II,the sandia waste isolation flow and transport model for fractured media, 1986.

K. Shelkes, H. Klinge, F. Schildknecht, and J. R. Weber, Water-conducting features in a geologic system consisting of a salt dome and overlying unconsolidated sediments. Water-conducting features in radionuclide Migration, Proc. GEOTRAP Workshop, pp.145-156, 1999.

W. Stanford and L. F. Konikow, Simulation of calcite dissolution and porosity changes in saltwater mixing zones in coastal aquifers, Water Ressource, vol.25, pp.655-667, 1989.

C. I. Steefel and S. Yabusaki, os3D/GIMRT Software for Modeling Multicomponent-Multidimensional Reactive Transport USER MANUAL & PROGRAMMER' S GUIDE. Department of Geology, p.11166, 1996.

J. C. Stormont, C. L. Howard, and J. K. Daemen, Changes in rock salt permeability due to nearby excavation, Rock Mechanics as a Multidisciplinary Science, Proceedings of the 32nd US Symposium, pp.899-907, 1991.

B. Balkema,

A. Verma and K. Pruess, Thermohydrological conditions and silica redistribution near high-level nuclear wastes emplaced in saturated geological formations, Journal of geophysical Research, vol.93, issue.B2, pp.1159-1173, 1988.
DOI : 10.1029/jb093ib02p01159

URL : https://cloudfront.escholarship.org/dist/prd/content/qt8z8173rz/qt8z8173rz.pdf?t=p0todc

A. Younes, P. Ackerer, and R. Mose, Modeling variable density flow and solute transport in poros medium:2 Re evaluation of the salt dome flow problem. Transport in poros media, vol.35, pp.375-394, 1998.