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Documents dont le centre de recherche est "URPEI - Unité de recherche en procédés d'écoulements industriels"

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Nombre de documents: 10

Bulle, C., Bertrand, F., Samson, R., & Deschênes, L. (2008). Sensitivity Study of an OCDD Environmental Fate Screening Model in Soils in the Presence of PCP Wood-Preserving Oil. Chemosphere, 73(1), S149-S157. Lien externe

Cabaret, F., Fradette, L., & Tanguy, P. A. (2008). Effect of shaft eccentricity on the laminar mixing performance of a radial impeller. Canadian Journal of Chemical Engineering, 86(6), 971-977. Lien externe

Cabaret, F., Fradette, L., & Tanguy, P. A. (2008). Gas-Liquid Mass Transfer in Unbaffled Dual-Impeller Mixers. Chemical Engineering Science, 63(6), 1636-1647. Lien externe

Cabaret, F., Fradette, L., & Tanguy, P. A. (2008). New turbine impellers for viscous mixing. Chemical Engineering and Technology, 31(12), 1806-1815. Lien externe

Coesnon, B., Heniche, M., Devals, C., Bertrand, F., & Tanguy, P. A. (2008). A Fast and Robust Fictitious Domain Method for Modelling Viscous Flows in Complex Mixers: the Example of Propellant Make-Down. International Journal for Numerical Methods in Fluids, 58(4), 427-449. Lien externe

Devals, C., Heniche, M., Takenaka, K., & Tanguy, P. A. (2008). Cfd Analysis of Several Design Parameters Affecting the Performance of the Maxblend Impeller. Computers & Chemical Engineering, 32(8), 1831-1841. Lien externe

Farhat, M., Fradette, L., & Tanguy, P. A. (2008). Revisiting the Performance of a Coaxial Mixer. Industrial & Engineering Chemistry Research, 47(10), 3562-3567. Lien externe

Giguère, R., Fradette, L., Mignon, D., & Tanguy, P. A. (2008). Characterization of Slurry Flow Regime Transitions by ERT. Chemical Engineering Research & Design, 86(9A), 989-996. Lien externe

Giguère, R., Fradette, L., Mignon, D., & Tanguy, P. A. (2008). ERT Algorithms for Quantitative Concentration Measurement of Multiphase Flows. Chemical Engineering Journal, 141(1-3), 305-317. Lien externe

Khopkar, A. R., & Tanguy, P. A. (2008). Cfd Simulation of Gas-Liquid Flows in Stirred Vessel Equipped With Dual Rushton Turbines: Influence of Parallel, Merging and Diverging Flow Configurations. Chemical Engineering Science, 63(14), 3810-3820. Lien externe

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