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Jérôme Vétel (22)

  • Articles de revue (17)
    • 2020
      • Article de revue
        Serra, M., Crouzat, S., Simon, G., Vétel, J. & Haller, G. (2020). Material spike formation in highly unsteady separated flows. Journal of Fluid Mechanics, 883, 27 pages. Tiré de https://doi.org/10.1017/jfm.2019.876
    • 2018
      • Article de revue
        Lamarche-Gagnon, M.E. & Vetel, J. (2018). An inverse problem to assess the two-component unsteady wall shear rate. International Journal of Thermal Sciences, 130, 278-288. Tiré de https://doi.org/10.1016/j.ijthermalsci.2018.04.022
      • Article de revue
        Lamarche-Gagnon, M.-É., Sobolík, V. & Vétel, J. (2018). Diagnostics of the fluctuating wall shear rate components using an uncalibrated three-segment electrodiffusion sensor. Experiments in Fluids, 59(11). Tiré de https://doi.org/10.1007/s00348-018-2623-z
      • Article de revue
        Serra, M., Vetel, J. & Haller, G. (2018). Exact theory of material spike formation in flow separation. Journal of Fluid Mechanics, 845, 51-92. Tiré de https://doi.org/10.1017/jfm.2018.206
      • Article de revue
        Lamarche-Gagnon, M.-E. & Vetel, J. (2018). Experimental investigation of unsteady separation in the rotor-oscillator flow. Journal of Fluid Mechanics, 844, 546-566. Tiré de https://doi.org/10.1017/jfm.2018.188
      • Article de revue
        Di Labbio, G., Vetel, J. & Kadem, L. (2018). Material transport in the left ventricle with aortic valve regurgitation. Physical Review Fluids, 3(11), 29 pages. Tiré de https://doi.org/10.1103/PhysRevFluids.3.113101
    • 2015
      • Article de revue
        Mohammed-Taifour, A., Weiss, J., Sadeghi, A., Vetel, J., Jondeau, E. & Comte-Bellot, G. (2015). A detailed procedure for measuring turbulent velocity fluctuations using constant-voltage anemometry. Experiments in Fluids, 56(9), 13 pages. Tiré de https://doi.org/10.1007/s00348-015-2045-0
      • Article de revue
        Miron, P., Vetel, J. & Garon, A. (2015). On the flow separation in the wake of a fixed and a rotating cylinder. Chaos: An Interdisciplinary Journal of Nonlinear Science, 25(8), 10 pages. Tiré de https://doi.org/10.1063/1.4921212
      • Article de revue
        Miron, P. & Vetel, J. (2015). Towards the detection of moving separation in unsteady flows. Journal of Fluid Mechanics, 779, 819-841. Tiré de https://doi.org/10.1017/jfm.2015.461
    • 2014
      • Article de revue
        Miron, P., Vetel, J. & Garon, A. (2014). On the use of the finite-time Lyapunov exponent to reveal complex flow physics in the wake of a mechanical valve. Experiments in Fluids, 55(9), 15 pages. Tiré de https://doi.org/10.1007/s00348-014-1814-5
    • 2012
      • Article de revue
        Miron, P., Vétel, J., Garon, A., Delfour, M. & Hassan, M.E. (2012). Anisotropic mesh adaptation on Lagrangian Coherent Structures. Journal of computational physics, 231(19), 6419-6437. Tiré de https://doi.org/10.1016/j.jcp.2012.06.015
      • Article de revue
        El Hassan, M., Assoum, H.H., Sobolik, V., Vetel, J., Abed-Meraim, K., Garon, A. & Sakout, A. (2012). Experimental Investigation of the Wall Shear Stress and the Vortex Dynamics in a Circular Impinging Jet. Experiments in Fluids, 52(6), 1475-1489. Tiré de https://doi.org/10.1007/s00348-012-1269-5
    • 2011
      • Article de revue
        Vetel, J., Garon, A. & Pelletier, D. (2011). Denoising methods for time-resolved PIV measurements. Experiments in Fluids, 51(4), 893-916. Tiré de https://doi.org/10.1007/s00348-011-1096-0
    • 2010
      • Article de revue
        Vetel, J., Garon, A. & Pelletier, D. (2010). Vortex identification methods based on temporal signal-processing of time-resolved PIV data. Experiments in Fluids, 48(3), 441-459. Tiré de https://doi.org/10.1007/s00348-009-0749-8
    • 2009
      • Article de revue
        Vetel, J., Garon, A. & Pelletier, D. (2009). Lagrangian coherent structures in the human carotid artery bifurcation. Experiments in Fluids, 46(6), 1067-1079. Tiré de https://doi.org/10.1007/s00348-009-0615-8
    • 2008
      • Article de revue
        Vetel, J., Garon, A., Pelletier, D. & Farinas, M.I. (2008). Asymmetry and Transition to Turbulence in a Smooth Axisymmetric Constriction. Journal of Fluid Mechanics, 607, 351-386. Tiré de https://doi.org/10.1017/S0022112008002188
    • 2006
      • Article de revue
        Vetel, J., Farinas, M.I., Garon, A. & Pelletier, D. (2006). Characterization of a Diffuser Flow by Time-Resolved PIV. Journal of Visualization, 9(2), 219-226. Tiré de https://doi.org/10.1007/BF03181765
  • Communications de conférence (5)
    • 2013
      • Communication de conférence
        Miron, P., Vétel, J. & Garon, A. (2013). Efficient computation of the finite-time Lyapunov exponent. Communication présentée à 21st AIAA Computational Fluid Dynamics Conference, San Diego, CA, USA. Tiré de https://doi.org/10.2514/6.2013-3086
    • 2012
      • Communication de conférence
        Assoum, H.H., Sakout, A., Abed-Meraim, K., Alia, A., Hassan, M.E. & Vetel, J. (2012). Experimental investigation of the vibration of a slotted and a non-slotted plates and the acoustic field in a plane impinging jet. Communication présentée à 9th European Conference on Noise Control, EURONOISE 2012, Prague, Czech republic (p. 801-806).
    • 2010
      • Communication de conférence
        Vétel, J., Garon, A. & Pelletier, D. (2010). Analysis of complex Flows from Experimental data and Numerical Experiments. Communication présentée à 3rd Joint US-European Fluids engineering Summer Meeting, Montréal, Québec. Tiré de https://doi.org/10.1115/FEDSM-ICNMM2010-30033
      • Communication de conférence
        Bélanger, S., Vétel, J., Garon, A. & Pelletier, D. (2010). Grid adapted time-dependent lagrangian coherent structures identification. Communication présentée à 4th European Conference on Computational Mechanics, Solids, Structures, and Coupled Problems in Engineering, Paris, France.
    • 2009
      • Communication de conférence
        Belanger, A., Vétel, J., Garon, A. & Pelletier, D. (2009). Adaptive grid stretching for Lagrangian coherent structures identification. Communication présentée à 11th Conference of the International Society for Grid Generation, Montréal, Québec.