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Hassan Assoum


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Mechanical Engineering


h.assoum@bau.edu.lb


06 218400 Ex: 4319


Tripoli


Hassan Assoum

Assistant Professor


Hassan Assoum received his Ph.D. in 2013 from the university of La Rochelle In France and M.S. in Mechanical Engineering in 2010 from the University of Technology of Compiegne in France. He is Assistant Professor in the Department of Mechanical Engineering at Beirut Arab University. He was Assistant Professor of mechanical engineering in the engineering faculty of La Rochelle, from 2011 to 2014 in parallel with his doctoral studies. He was also a member of the research and development department of Peugeot France

Teaching

2015-2016 Courses

  • Pump Technology MHCE531 (Fall 2015)
  • Piping system calculations. Pump classifications. Centrifugal pump construction. Pump performance curves, operating points, discharge regulation, similarity, speed variation, and cavitation. Pumps in series and parallel. Multi-stage pumps, axial flow pumps, Kaplan pumps. Pump applications and introduction to pump station design and cavitation in pumps.
  • Fluid System Design MCHE 532 (Fall2015/Spring 2016)
  • Piping system calculations. Pump classifications. Centrifugal pump construction. Pump performance curves, operating points, discharge regulation, similarity, speed variation, and cavitation. Pumps in series and parallel. Multi-stage pumps, axial flow pumps, Kaplan pumps. Pump applications and introduction to pump station design and cavitation in pumps.
  • Hydraulics machinery MCHE 533 (Fall 215)

  • Hydraulic turbines, Pelton wheel, Francis, propeller and Kaplan turbines, construction, design factors, discharge regulation and part load performance, model testing, cavitations and turbine selection, hydropower plants, types, capacity, number of units, pump storage projects, hydro-power plants in Lebanon.
  • Dynamics MCHE 213 (Fall 2015)
  • Dynamics of a particle, system of particles, and planar rigid bodies using Newton’s law of motion,work and energy principle, and impulse and momentum principle. Free-body diagram and concept of equilibrium. Inertia properties of rigid bodies.
  • Foundation of mechanical engineering MCHE 204 (Spring 2016)

  • The purpose of this course is to introduce the student to the field of mechanical engineering. At the end of this course, the student is expected to know the basic elements and practical considerations in thermodynamics engineering, to apply thermodynamics fundamentals to solve problems relevant to thermodynamics engineering and critically assess relevant aspects of the industry select rolling element bearings; to analyze the thermodynamics cycle to understand the key parameters that significantly affect the cycle thermal performance using EES software, to demonstrate an ability to initiate and sustain in-depth research relevant to thermodynamics engineering.
  • Material properties and Heat PHYS 282 (Fall2015/Spring 2016)

  • Dimensional analysis- Rules of rotational motion- Moment of inertia and radius of gyration- Compound pendulum- Elasticity and elastic energy- Torsion- Fluid flow and Bernoulli equation - Applications of ideal flow- Viscosity- Heat and Temperature -Heat transfer by conduction, convection and radiation.

Research

Vortex dynamics and self-sustained tones in impinging jet)

All Publications
 ‘’The vortex dynamics and the self-sustained tones in aplane jet impinging on a slotted plate’’. Assoum, H.H., Hassan, M.E., Abed-Meraïm, , Sakout, A. (2014) European Journal of Mechanics-B/Fluids Volume 48, page 231
 ‘’Experimental analysis of the aero-acoustic coupling in a plane impinging jet on a slotted plate’’. Assoum, H.H., Hassan, M.E., Abed-Meraïm, K., Martinuzzi, R., Sakout, A. (2013) Fluid Dynamics Research, 45 (4), art. no. 045503.
 ‘’Experimental investigation of the wall shear stress in a circular impinging jet’’. El Hassan, M., Assoum, H.H., Martinuzzi, R., Sobolik, V., Abed-Meraim, K., Sakout, A. (2013) Physics of Fluids, 25 (7), art. no. 077101.
 ‘’Experimental investigation of the wall shear stress and the vortex dynamics in a circular impinging jet’’. El Hassan, M., Assoum, H.H., Sobolik, V., Vétel, J., Abed-Meraim, K., Garon, A., Sakout, A. (2012) Experiments in Fluids, 52 (6), pp. 1475-1489.


Conference Proceedings
 “Dynamics of a plane impinging jet in the presence of self-sustaining sound : Correlation between the acoustic field and the transverse velocity” H. H. Assoum, M. El Hassan, J. Hamdi, M. Ali, K. Abed-Meraïm and A. Sakout. International Conference On Materials & Energy-ICOME 2016
 Interactions entre les structures tourbillonnaires dans un jet plan heurtant une plaque fendue et le champ acoustique généré par cet obstacle. Hassan.H. Assoum, , K. Abed-Meraim, A. Sakout, 22 ème Congrès Français de Mécanique. 2015
 The turbulent kinetic energy and the acoustic field in a rectangular jet impinging a slotted plate H. H. Assoum, M. El Hassan, J. Hamdi, A. Hammoud, K. Abed-Meraïm and A. Sakout. International Conference On Materials & Energy-ICOME 2016.
 ‘’The acoustic production and the vortices dynamics involved in a plane impinging jet.’’ Assoum, H.H., Abed-Meraïm, Sakout, A. (2013) Congrès Français de Mécanique.
 ‘’Experimental investigation of the vibration of a slotted and a non-slotted plates and the acoustic field in a plane impinging jet.’’ Assoum, H.H., Sakout, A., Abed-Meraïm, K., Alia, A., Hassan, M.E., Vetel, J. (2012) Proceedings - European Conference on Noise Control, pp. 801-806.
 ‘’Experimental investigation of the vibration of a slotted plate and the acoustic field in a plane impinging jet.’’ Assoum, H.H., Sakout, A., Hassan, M.E., Vetel, J., Alia, A., Abed-Meraïm, K. (2012) Acoustics 2012, France (2012). hal-00810574.
 ‘’Wall shear stress and vortex dynamics in a circular impinging jet’’. El Hassan, M., Assoum, H.H., Sobolik, V., Vétel, J., Abed-Meraim, K., Sakout, A., Garon, A. (2011) Experimental fluid mechanics. (Praha)