Matson, D. W., Fulton, J. L., Petersen, R. C., Smith, R. D., Rapid expansion of supercritical fluid solutions: solute formation of powders, thin films and fibers, Industrial and Engineering Chemistry Research, 1987, 26, 2298-2306. CrossRef | |
Tom, J. W., Debenedetti, P. G., Jerome, R., Precipitation of poly(L-lactic acid) and composite poly(L-lactic acid)- pyrene particles by rapid expansion of supercritical solutions, Journal of Supercritical Fluids, 1994, 7, 9-29. CrossRef | |
Mohamed, R. S., Debenedetti, P. G., Prud'homme, R. K., Effects of process conditions on crystals obtained from superoxide mixtures, AIChE Journal, 1989, 35, 325-328. CrossRef | |
Ksibi, H. Subra, P. Garrabos, Y., Formation of fine powders of caffeine by the RESS process, Advanced Powder Technology, 1995, 6(1), 25-33. CrossRef | |
Courant, R., Friedrichs, K. O., Supersonic Flow and Shock Waves, Interscience Publishers Inc., New York, 1948. | |
Ashkenas H., Sherman F. S., The structure and utilization of supersonic free jets in low density wind tunnels. in: H. L. Dryden, T. von Karman (Eds.), Advances in Applied Mechanics, Suppl. 3, in: J. H. de Leeuw (Ed.), Rarefied Gas Dynamics, vol. 2, 84-105, 1965. | |
Anderson, J. D., A Time dependent analysis for vibrational and chemical nonequilibrium nozzle flows. AIAA Journal, 1970, 8, 545-550. CrossRef | |
Campargue R., Progress in over expanded supersonic jets and skimmed molecular beams in free-jet zones of silence. Journal of Physical Chemistry., 1984, 88 (20) 4466-4474. CrossRef | |
Reverchon, E., Pallado, P., Hydrodynamic modeling of the RESS process, Journal of Supercritical Fluids, 1995, 8 (4), 318-328. CrossRef | |
Khalil I., Miller, D. R., The Structure of Supercritical Fluid Free-Jet Expansions; AIChE Journal, 2004, 50 (11), 2697-2704. CrossRef | |
Lele A. K., Shine, A. D., Morphology of Polymers Precipitated from a Supercritical Solvent, AIChE Journal, 1992, 38, 742. CrossRef | |
Musschenga, E. E., Hamersma, P. J., Fortuin, J. M. H., Momentum, heat and mass transfer in turbulent pipe flow. The extended random surface renewal model, Chemical Engineering Science, 1992, 47 (17-18), 4373-4392. CrossRef | |
Kwauk, X., Debenedetti, P. G., Mathematical modeling of aerosol formation by rapid expansion of supercritical solutions in a converging nozzle, Journal of Aerosol Science, 1993, 24 (4), 445-469. CrossRef | |
Bender, E., Equation of State Exactly Representing the Phase Behavior of Pure Substances, Proceedings of the 5th Symp. on Thermophysical Properties, ASME, New York, 1970, 227. | |
Türk, M., (1999). Formation of Small Organic Particles by RESS: Experimental and Theoretical Investigations, Journal of Supercritical Fluids, 15, 79. CrossRef | |
Helfgen, B., Hils, P., Holzknecht, Ch., Türk, M., Schaber K., Simulation of particle formation during the rapid expansion of supercritical solutions, Journal of Aerosol Science, 2001, 32, 295-319. CrossRef | |
Helfgen, B., Turk, M., Schaber K., Hydrodynamic and aerosol modelling of the rapid expansion of supercritical solutions (RESS-process). Journal of Supercritical Fluids, 2003, 26, 225-242. CrossRef | |
Weber, M. Russell, L. M. Debenedetti, P. G., Mathematical modeling of nucleation and growth of particles formed by the rapid expansion of a supercritical solution under subsonic conditions; Journal of Supercritical Fluids, 2002, 23, 65-80. CrossRef | |
Carnahan, N. F., Starling, K. E., Intermolecular repulsions and the equation of state for fluids, AIChE Journal, 1972, 18 (6), 1184-1189. CrossRef | |
Hirunsit, P., Huang, Z., Srinophakun, T., Charoenchaitrakool, M., Kawi, S., Particle formation of ibuprofen-supercritical CO2 system from rapid expansion of supercritical solutions (RESS): A mathematical model; Powder Technology, 2005, 154, 83-94. CrossRef | |
Sandler S. I., Chemical and Engineering Thermodynamics. New York: John Wiley & Sons, Inc, 1999. | |
Ksibi, H., Tenaud, C., Subra, P., Garrabos, Y., Numerical Simulation of the rapid expansion of supercritical fluid flow, European Journal of Mechanics/B Fluids, 1996, 15(4), 569-596. | |
Ksibi, H., Influence of the capillary dimensions in RESS process, Chem. and Biochem. Eng. Quarterly Journal, 1999, 13 (3), 139-144. | |
Ksibi, H., Effect of Small Capillaries on the Hydrodynamic Conditions in the RESS Process, Proceedings of the 5th Meeting on Supercritical Fluids; Materials and Natural Products processing, M. Perrut and P. Subra (Eds.), Tome 1: Materials, Nice, 1998, 319-324. | |
Roe, P. L., Approximate Riemann solvers, parameter vectors and difference schemes, Journal of Comput. Phys., 1981, 43, 357-372. CrossRef | |
Altunin, V. V., Gadetskii, O. G., Method of formulating the fundamental equations of state for pure substances from varied experimental data, Teplofizika Vysokikh Temperatur 1971, 9 (3), 527-534 | |
Harten, A., Yee, H. C., Implicit TVD schemes for hyperbolic conservation lows in curvilinear coordinates, AIAA Journal, 1986, 25, 266-274. CrossRef | |
Ben Moussa, A., Ksibi, H., Tenaud, C., Baccar, M., Paramètres géométriques de contrôle de la détente d'un fluide supercritique, International Journal of Thermal Sciences, 2005, 44, 774-786. CrossRef | |
Ksibi, H., Ben Moussa, A., Baccar, M., Powder structure transition under the recrystallization conditions in the RESS Process, Chemical Engineering & Technology, 2006, 29 (7), 868-874. CrossRef | |
Chitanvis, S. M., Initiation of rapidly expanding supercritical fluids, Physica A, 2003, 322, 55-72. CrossRef | |
Weber, M. Thies, M. C. A simplified and generalized model for the rapid expansion of supercritical solutions; Journal of Supercritical Fluids, 2007, 40 (3), 402-419. CrossRef |
A Review of Numerical Investigations Regarding the Supercritical Fluid Expansion in the RESS Process
Ali MoussaRelated information
1 Sfax University, IPEIS, P. Box 1172, Sfax 3018 Tunisia
, Hatem KsibiRelated information1 Sfax University, IPEIS, P. Box 1172, Sfax 3018 Tunisia