Issue
Mechanics & Industry
Volume 27, 2026
Overview of recent advances in research for next generation in Mechanical Engineering
Article Number 23
Number of page(s) 11
DOI https://doi.org/10.1051/meca/2026019
Published online 19 May 2026
  1. C.-M. Ho, N.S. Nosseir, Dynamics of an impinging jet. Part 1. The feedback phenomenon, J. Fluid Mech. 105, 119–142 (1981) [Google Scholar]
  2. M.J. Lighthill, On sound generated aerodynamically II. Turbulence as a source of sound, Proc. R. Soc. Lond. A 222, 1–32 (1954) [Google Scholar]
  3. A. Powell, On the edgetone, J. Acoust. Soc. Am. 33, 395–409 (1961) [Google Scholar]
  4. M.S. Howe, Contributions to the theory of aerodynamic sound, with application to excess jet noise and the theory of the flute, J. Fluid Mech. 71, 625–673 (1975) [Google Scholar]
  5. Y. Zhang, Experimental studies of the turbulence structures of impinging reacting jets using time-resolved particle image velocimetry visualization, hot wire anemometry and acoustic signal processing, Exp. Fluids 29, S282–S290 (2000) [Google Scholar]
  6. R.C. Chanaud, A. Powell, Some experiments concerning the hole and ring tone, J. Acoust. Soc. Am. 37, 902–911 (1965) [Google Scholar]
  7. A. Billon, V. Valeau, A. Sakout, Two feedback paths for a jet-slot oscillator, J. Fluids Struct. 21, 121–132 (2005) [Google Scholar]
  8. H.H. Assoum, M.E. Hassan, K. Abed-Meraïm, R. Martinuzzi, A. Sakout, Experimental analysis of the aero-acoustic coupling in a plane impinging jet on a slotted plate, Fluid Dyn. Res. 45, 045503 (2013) [Google Scholar]
  9. H.H. Assoum, J. Hamdi, K. Abed-Meraïm, M. El Hassan, M. Ali, A. Sakout, Correlation between the acoustic field and the transverse velocity in a plane impinging jet in the presence of self-sustaining tones, Energy Procedia 139, 391–397 (2017) [Google Scholar]
  10. H.H. Assoum, J. Hamdi, K. Abed-Meraïm, M. El Hassan, A. Hammoud, A. Sakout, Experimental investigation of the turbulent kinetic energy and the acoustic field in a rectangular jet impinging a slotted plate, Energy Procedia 139, 398–403 (2017) [Google Scholar]
  11. A. Dhamanekar, K. Srinivasan, Effect of impingement surface roughness on the noise from impinging jets, Phys. Fluids 26, 036101 (2014) [Google Scholar]
  12. M. Akamine et al., Effect of nozzle–plate distance on acoustic phenomena from supersonic impinging jet, AIAA J. 56, 1943–1952 (2018) [Google Scholar]
  13. R. Gojon, C. Bogey, Effects of the angle of impact on the aeroacoustic feedback mechanism in supersonic impinging planar jets, Int. J. Aeroacoust. 18, 258–278 (2019) [Google Scholar]
  14. J. Hamdi, H.H. Assoum, M. Alkheir, K. Abed-Meraïm, S. Cauet, A. Sakout, Analysis of the 3D flow of an impinging jet on a slotted plate using TR-Tomo PIV and Proper Orthogonal Decomposition, Energy Rep. 6, 158–163 (2020) [Google Scholar]
  15. J. Hamdi, H. Assoum, K. Abed-Meraïm, A. Sakout, Analysis of the effect of the 3C kinematic field of a confined impinging jet on a slotted plate by stereoscopic PIV, Eur. J. Mech. B Fluids 76, 243–258 (2019) [Google Scholar]
  16. H.H. Assoum et al., Tomographic Particle Image Velocimetry and Dynamic Mode Decomposition (DMD) in a rectangular impinging jet: Vortex dynamics and acoustic generation, Fluids 6, 429 (2021) [Google Scholar]
  17. H.H. Assoum et al., Turbulent kinetic energy and self-sustaining tones: Experimental study of a rectangular impinging jet using high speed 3D tomographic Particle Image Velocimetry, JMES 14, 6322–6333 (2020) [Google Scholar]
  18. H.H. Assoum, M. El Hassan, J. Hamdi, M. Alkheir, K.A. Meraim, A. Sakout, Turbulent kinetic energy and self-sustaining tones in an impinging jet using high speed 3D Tomographic-PIV, Energy Rep. 6, 802–806 (2020) [Google Scholar]
  19. M. Alkheir, T. Mrach, J. Hamdi, K. Abed-Meraim, L. Rambault, M. El Hassan, Effect of passive control cylinder on the acoustic generation of a rectangular impinging jet on a slotted plate, Energy Rep. 6, 549–553 (2020) [Google Scholar]
  20. N.E. Afyouni et al., Effect of a control mechanism on the interaction between a rectangular jet and a slotted plate: Experimental study of the aeroacoustic field, Fluids 8, 309 (2023) [Google Scholar]
  21. N. Rajaratnam, Turbulent Jets, Developments in Water Science, vol. 5, Elsevier Scientific Pub. Co., Amsterdam, New York, 1976 [Google Scholar]
  22. H. Assoum, Étude expérimentale des couplages entre la dynamique d’un jet qui heurte une plaque fendue et l’émission sonore générée, PhD thesis, La Rochelle University, 2013 [Google Scholar]
  23. FlowMaster Getting Started. LaVision [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.