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Dr. Ashraf N. Al-Khateeb

Dr. Ashraf N. Al-Khateeb

Assistant Professor, Department of Aerospace Engineering

Address: P.O.Box: 127788, Dubai, UAE

Telephone: +971-(0)2-5018573

Fax: +971 (02) 447 2442

Email:  

 

  • Ph.D, Aerospace & Mechanical Engineering, University of Notre Dame (USA), 2010 
  • M.Sc., Aerospace Engineering, University of Notre Dame (USA), 2009 
  • M.Sc., Mechanical Engineering, Jordan University of Science & Technology (JOR), 2002
  • B.Sc., Mechanical Engineering, Jordan University of Science & Technology (JOR), 2000
  • Combustion
  • Numerical analysis
  • Fluid mechanics
  • Thermodynamics
  • Combustion
  • Applied mathematics
  • Thermochemistry
  • Model reduction

Scopus

  • 2013 A. N. Al-Khateeb, J. M., Powers, and S. Paolucci, “Analysis of the Spatio-Temporal Scales of Laminar Premixed Flames Near Equilibrium,” Combustion Theory and Modelling, 17(1), pp. 76-108.
  • 2010 A. N. Al-Khateeb, J. M. Powers, and S. Paolucci, 2010, “On the Necessary Grid Resolution for Verified Calculation of Premixed Laminar Flames,” Communications in Computational Physics, 8(2), pp. 304-326.  
  • 2009 A. N. Al-Khateeb, J. M. Powers, S. Paolucci, A. J. Sommese, J. A. Diller, J. D. Hauenstein, and J. D. Mengers, 2009, “One-Dimensional Slow Invariant Manifolds for Spatially Homogenous Reactive Systems,” Journal of Chemical Physics, 131(2), 024118.  
  • 2007 A. N. Al-Khateeb, J. M. Powers, and S. Paolucci, 2007, “Verified Computations of Laminar Premixed Flames,” AIAA 2007-0381, Reno, NV.  
  • 2005 O. M. Haddad, M. A. Al-Nimr, and A. N. Al-Khateeb, 2005, “Validity of the Local Thermal Equilibrium Assumption in Natural Convection from a Vertical Plate Embedded In Porous Medium,” Journal of Porous Media, 8(1), pp. 85-95.  
  • 2004 O. M. Haddad, M. A. Al-Nimr, and A. N. Al-Khateeb, 2004, “Validation of the Local Thermal Equilibrium Assumption in Natural Convection from a Vertical Plate Embedded In Porous Medium: non-Darcian Model,” International Journal of Heat and Mass Transfer, 47(8-9), pp. 2037-2042.