Access provided by Rice University


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
< >

Issue Details

International Journal of Emerging Multidisciplinary Fluid Sciences


International Journal of Emerging Multidisciplinary Fluid Sciences

Print ISSN: 1756-8315

Related Content Search

Find related content

By Keyword
By Author

Subscription Options

Individual Offers