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Dr.Khalid Mustafa Ramadan Associate Professor Academic RankAssociate Professor

Specialization:

  • Thermo-Fluids.

Research Interests:

  • Computational Thermal Science, micro-flows, micro-scale heat transfer, convective heat transfer.

Contact

• PhD in Mechanical Engineering, 12/2002, University of Iowa, Iowa, USA. • MSc in Mechanical Engineering, 06/1989, Jordan University of Science and Technology, JORDAN. • BSc in Mechanical Engineering, 02/1986, Yarmouk University, JORDAN.
• Associate Professor: 09/2016 – To date, University of Sharjah, UAE. • Professor: 02/2016 – 08/2016, Mutah University, JORDAN. • Associate Professor: 08/2014 – 02/2016, Mutah University, JORDAN. • Associate Professor: 08/2013 – 08/2014, Majmaah University, SAUDI ARABIA. • Associate Professor: 08/2012 – 08/2013, Mutah University, JORDAN. • Associate Professor: 09/2011 – 8/2012, Taibah University, Madina, SAUDI ARABIA. • Associate Professor: 02/2010 – 09/2011, Mutah University, JORDAN. • Assistant Professor: 11/2004 – 02/2010, Mutah University, JORDAN. • Acting ME Department Chairperson: 09/2006 – 02/2007, Mutah University, JORDAN. • Postdoctoral Research Scholar: 12/2002 – 06/2004, University of Iowa, Iowa City, USA. • Teaching/Research Assistant: 08/1998 - 12/2002, University of Iowa, Iowa City, USA. • Teaching/Research Assistant: 02/1986 – 06/1989. Jordan University of Science and Technology, JORDAN. • Consultant: 06/2003 – 06/2004, Praxair Surface Technologies, Indianapolis, Indiana, USA. • Office Planning Engineer: 05/1994 - 12/1997 Consolidated Contractors International Company(CCIC), Athens, GREECE. • Field Mechanical Engineer: 03/1990 - 04/1994 Consolidated Contractors International Company(CCIC), Athens, GREECE.
• Reviewer for a number of major international journals of thermo-fluid sciences. • Committee member in many MSc and PhD theses defense examinations.
• Analysis of Non-Fourier Heat Conduction in Thin Films. • Modeling and Computations of Microchannel Heat Transfer.
• K. Ramadan, ” The Role of the Shear Work in Microtube Convective Heat Transfer: A Comparative Study”, Journal of Heat Transfer- Transactions of the ASME, 138(1), January 2016, DOI: 10.1115/1.4031107.(ASME). • K. Ramadan, Iskander Tlili, ” Shear Work, Viscous Dissipation and Axial Conduction Effects on Microchannel Heat Transfer with a Constant Wall Temperature”, Proc IMechE Part C:J Mechanical Engineering Science, 230(14) August, 2016, pp. 2496-2507, DOI: 10.1177/0954406215598799. (SAGE). • K. Ramadan, I. Tlili, ”A Numerical Study of the Extended Graetz Problem in a Microchannel with a Constant Wall Heat Flux: Shear Work Effects on Heat Transfer”, Journal of Mechanics, 31(6) 2015, pp. 733-743, DOI: 10.1017/jmech.2015.29. (Cambridge University Press). • K. Ramadan, “A Numerical Study of Impulsively Started External Convection at Microscale, Journal of Mechanics, 31(1), 2015, pp. 79-90. (Cambridge University Press). • Khalid M Ramadan, “Slip Effects on Steady and Transient Stagnation-Point Heat Transfer in Axisymmetric Geometries“, Proc IMechE Part C:J Mechanical Engineering Science, 228(15) 2014, pp. 2765 – 2777. (SAGE). • K. Ramadan, M. A. Al-Nimr, “On Impulsively Started Convection: The Case of Stagnation Point Flow”, International Journal of Thermal Sciences, Vol. 50(12), 2011, pp. 2355-2364. (Elsevier). • K. Ramadan, W. R. Tyfour, M. A. Al-Nimr, “On the Analysis of Short-Pulse Laser Heating of Metals Using the Dual Phase Lag Heat Conduction Model”. Journal of Heat Transfer – Transactions of the ASME, Vol. 131(11), 2009, Paper No. (111301). (ASME). • K. Ramadan, M. A. Al-Nimr, “Analysis of Transient Heat Transfer in Multilayer Thin Films with Nonlinear Thermal Boundary Resistance”, International Journal of Thermal Sciences, Vol. 48, 2009, pp. 1718–1727. (Elsevier). • K. Ramadan, “Semi-Analytical Solutions for the Dual Phase Lag Heat Conduction in Multilayered Media”. International Journal of Thermal Sciences, Vol. 48, 2009, pp. 14–25. (Elsevier). • K. Ramadan, M. A. Al-Nimr, “Thermal Wave Reflection and Transmission in a Multilayer Slab with Imperfect Contact Using the Dual-Phase-Lag Model”. Heat Transfer Engineering, Vol. 30(8), 2009, pp. 677-687. (Taylor & Francis).
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