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Publications - Nizar Abcha

Article dans une revue11 documents

  • Hans Gunnoo, Nizar Abcha, Alexander B. Ezersky. Frequency lock-in and phase synchronization of vortex shedding behind circular cylinder due to surface waves. Modern Physics Letters A, World Scientific Publishing, 2016, 380 (7-8), pp.863 - 868. <10.1016/j.physleta.2015.12.029>. <hal-01537629>
  • Noureddine Latrache, Nizar Abcha, Olivier Crumeyrolle, Innocent Mutabazi. Defect-mediated turbulence in ribbons of viscoelastic Taylor-Couette flow. Physical Review E , American Physical Society (APS), 2016, 93 (4), <10.1103/PhysRevE.93.043126>. <hal-01537639>
  • D. Merkoune, J. Touboul, N. Abcha, D. Mouazé, A.B. Ezersky. Focusing wave group on a current of finite depth. Natural Hazards and Earth System Sciences, European Geosciences Union, 2013, 13, pp.2941-2949. <10.5194/nhess-13-2941-2013>. <hal-00914200>
  • A.B. Ezersky, N. Abcha, E. Pelinovsky. Physical simulation of resonant wave run-up on a beach. Nonlinear Processes in Geophysics, European Geosciences Union (EGU), 2013, 20, pp.35-40. <10.5194/npg-20-35-2013>. <hal-00825386>
  • N. Abcha, O. Crumeyrolle, A.B. Ezersky, I. Mutabazi. Velocity field of the spiral vortex flow in the Couette-Taylor system. European Physical Journal E: Soft matter and biological physics, EDP Sciences: EPJ, 2013, 36 (20), pp.2-7. <10.1140/epje/i2013-13020-5>. <hal-00825186>
  • D. Merkoune, A.B. Ezersky, N. Abcha, F. Amine, D. Mouazé. INFLUENCE OF ARTIFICIALLY GENERATED AIR BUBBLES ON A WAVE BREAKING. Journal of Physics: Conference Series, IOP Publishing, 2011, 318, pp.092014. <10.1088/1742-6596/318/9/092014>. <hal-00679222>
  • A.B. Ezersky, N. Abcha, I. Mutabazi. The structure of spatio-temporal defects in a spiral pattern in the Couette-Taylor flow. Physics Letters A, Elsevier, 2010, 374, pp.3297-3303. <10.1016/j.physleta.2010.06.019>. <hal-00665623>
  • N. Abcha, N. Latrache, F. Dumouchel, I. Mutabazi. Qualitative relation between reflected light intensity by Kalliroscope flakes and velocity field in the Couette?Taylor flow system. Experiments in Fluids, Springer Verlag (Germany), 2008, 45 (1), pp.85 - 94. <10.1007/s00348-008-0465-9>. <hal-01545698>
  • L. Nana, A.B. Ezersky, N. Abcha, I. Mutabazi. Dynamics of spatio-temporal defects in the Couette-Taylor flow: Comparison of experimental and theoretical results. Journal of Physics: Conference Series, IOP Publishing, 2008, 137 (1), pp.012006. <10.1088/1742-6596/137/1/012006>. <hal-00488947>
  • Noureddine Latrache, Olivier Crumeyrolle, Nizar Abcha, Innocent Mutabazi. Destabilization of inertio-elastic mode via spatiotemporal intermittency in a Couette-Taylor viscoelastic flow. Journal of Physics: Conference Series, IOP Publishing, 2008, 137, pp.012022. <10.1088/1742-6596/137/1/012022>. <hal-01545699>
  • François Marin, Nizar Abcha, Jérôme Brossard, Alexander B. Ezersky. Laboratory study of sand bed forms induced by solitary waves in shallow water. Journal of Geophysical Research, Earth Surface, 2005, 110 (F4), pp.F04S17. <10.1029/2004JF000184>. <hal-01545702>

Chapitre d'ouvrage2 documents

  • Isabel García-Hermosa, Jerôme Brossard, Z. Cohen, Gaële Perret, Grégory Pinon, et al.. Experimental characterisation of wave induced flow fields due to an offshore wind farm mast. C. Guedes Soares. Renewable Energies Offshore, CRC Press, pp.791-797, 2015, 978-1-138-02871-5. <10.1201/b18973-112>. <hal-01534081>
  • I. Mutabazi, N. Abcha, O. Crumeyrolle, A.B. Ezersky. Application of the Particle Image Velocimetry to the Couette-Taylor Flow. The Particle Image Velocimetry-Characteristics, Limits and Possible Applications, G. Cavazzini, pp.177-202, 2012, <10.5772/2118>. <hal-00825406>