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Joseph Majdalani

From Wikipedia, the free encyclopedia

Joseph Majdalani
Born
Alma materUniversity of Utah
Occupation(s)Researcher and professor
TitleHugh and Loeda Francis Chair of Excellence in Aerospace Engineering
Scientific career
InstitutionsAuburn University
WebsiteOfficial website

Joseph Majdalani is a Lebanese-American professor of Mechanical and Aerospace Engineering. He began his career at Marquette University, before serving as both the Jack D. Whitfield Professor of High Speed Flows and Arnold Chair of Excellence at the University of Tennessee Space Institute. He then served as the Auburn Alumni Engineering Council Endowed Professor and Chair, and is currently the Hugh and Loeda Francis Chair of Excellence in Aerospace Engineering at Auburn University.

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Early life

Starting in 1991 Majdalani began working as an engineering consultant for companies in the technological, industrial, and design industries.[2] Majdalani received his graduate education from the University of Utah, receiving a Master of Science in 1991 and Ph.D. in Mechanical Engineering in 1995.[3] While at the University of Utah his major advisor was Professor William K. Van Moorhem.[4][5]

Teaching

His first faculty position was at Marquette University, where he received tenure. He was also awarded two outstanding teaching awards, as well as grants from the National Science Foundation and NASA. In 2002 he received the National Science Foundation CAREER Award in the acoustics, mechanical systems, and controls division.[6][7]

In 2003 Majdalani joined the Mechanical, Aerospace, and Biomedical Engineering faculty at the University of Tennessee Space Institute.[3] He started as the Jack D. Whitfield Professor of High Speed Flows, and in 2007 became the Arnold Chair of Excellence.[8] As a professor there, he was awarded the 2007 Ralph R. Teetor Educational Award from the Society of Automotive Engineers[9] as well as the 2012 Abe M. Zarem Educator Award from the American Institute of Aeronautics and Astronautics (AIAA).[10]

In 2006 Majdalani became a Fellow of the American Society of Mechanical Engineers.[3] He also served as the vice-chair and then chair for the Hybrid Rockets Technical Committee of the American Institute of Aeronautics and Astronautics from 2013 to 2017. That year he transitioned to chair the Solid Rockets Technical Committee.[8][11] He also served from 2016 to 2018 as the Honors & Awards Director for the AIAA Greater Huntsville Section.[12][13] Majdalani also served on the External Advisory Board of the Center for Simulation of Advanced Rockets, University of Illinois, Urbana-Champaign.[3]

In 2013 he was named the Auburn Alumni Engineering Council Endowed Professor and Chair of Aerospace Engineering at Auburn University.[8][14] He held this title until 2016, and then transitioned to the Hugh and Loeda Francis Chair of Excellence in Aerospace Engineering. As a part of this appointment, he has travelled internationally to recruit foreign students with diverse cultures and ethnic backgrounds through the Auburn Global initiative.[15]

At Auburn University, Majdalani served as Faculty Advisor for the AIAA Student Branch and received the 2014 Konrad Dannenberg Educator of the Year Award as well as the 2015 Faculty Advisor and the 2016 Sustained Service Awards from the AIAA Foundation.[16][17][18][19][20][21]

Research

Majdalani's work focuses on the theoretical and computational modeling of solid, liquid and hybrid rockets. His investigations have explored rocket internal ballistics, vorticity dynamics, rotating cyclonic flows, computational mathematics, and singular perturbation theory.[22] For example, his work uncovered new Trkalian and Beltramian helical flows within cyclonic hybrid and liquid rocket engines.[23] Majdalani also developed a generalized-scaling technique in perturbation theory for use in wave propagation. Both have been used in frameworks for modeling combustion instability in rocket systems.[24]

Majdalani has also developed a mathematical framework to model high speed flow problems through his work on compressible gas motions,[25] including work published in the Proceedings of the Royal Society and Journal of Fluid Mechanics.[26][27] Eighteen new dimensionless parameters have been discovered through his work. In all Majdalani has produced about 260 publications.[28] Among his research projects he has maintained collaborations with other professors as well as students, including researchers from ORBITEC,[29][30] the University of Utah, Pennsylvania State University, the University of Tennessee, Chattanooga, and the Arnold Engineering Development Complex.[31] His research contributions have been recognized through the 2005 and 2015 Solid Rockets Best Paper Awards from the American Institute of Aeronautics and Astronautics.[32]

References

  1. ^ "Engineering professor sues Auburn University".
  2. ^ Brucker, K. A.; Majdalani, J. (1 March 2003). "Equivalent thermal conductivity for compact heat sink models based on the Churchill and Chu correlation". IEEE Transactions on Components and Packaging Technologies. 26 (1): 158–164. doi:10.1109/TCAPT.2002.806173.
  3. ^ a b c d "UTSI Professor Majdalani Elected ASME Fellow". www.utsi.edu.
  4. ^ "Professor William K. Van Moorhem". majdalani.eng.auburn.edu.
  5. ^ Ann Wechsler. "Bill Van Moorhem – Dedicated Outings Leader". Utah Sierran. Winter 2004. Page 8.
  6. ^ "Dr. Joseph C. Majdalani" (PDF). SAE Aerospace Award Presentations. p. 12.
  7. ^ "NSF Award Search: Award#0353518 - CAREER: Control of Acoustic Instabilities in Large Combustors". National Science Foundation.
  8. ^ a b c "Former UTSI professor accepts post at Auburn". Tullahoma News. September 19, 2013.
  9. ^ "SAE International -- mobility engineering". www.sae.org.
  10. ^ "UTSI professor honored with educator award". Tullahoma News. January 26, 2013.
  11. ^ "Solid Rockets Technical Community". American Institute of Aeronautics and Astronautics.
  12. ^ "Honors & Awards". American Institute of Aeronautics and Astronautics.
  13. ^ "Directors". American Institute of Aeronautics and Astronautics.
  14. ^ "Airbus links with Alabama universities to build new leaders". Made in Alabama. July 2016.
  15. ^ Reddy, R. Ravikanth (5 April 2015). "Auburn University to lure Indian students". The Hindu.
  16. ^ "Recent Achievements in Aerospace at Auburn" (PDF). The Telemetry.
  17. ^ "Auburn AIAA Branch News" (PDF). The Telemetry.
  18. ^ "Faculty Advisor Award Recipients". www.aiaa.org. The American Institute of Aeronautics and Astronautics.
  19. ^ "Faculty Advisor Award". www.aiaa.org. The American Institute of Aeronautics and Astronautics.
  20. ^ "Sustained Service Award Recipients". www.aiaa.org. The American Institute of Aeronautics and Astronautics.
  21. ^ "Sustained Service Award". www.aiaa.org. The American Institute of Aeronautics and Astronautics.
  22. ^ "Hybrid Rocket Propulsion : The American Institute of Aeronautics and Astronautics". propulsionenergy.aiaa.org.
  23. ^ Majdalani, Joseph (1 January 2012). "Helical solutions of the bidirectional vortex in a cylindrical cyclone: Beltramian and Trkalian motions". Fluid Dynamics Research. 44 (6): 065506. Bibcode:2012FlDyR..44f5506M. doi:10.1088/0169-5983/44/6/065506. S2CID 120544963.
  24. ^ Sean R. Fischbach (7 October 2015). "Solid Rocket Motor Combustion Instability Modeling in COMSOL Multiphysics" (PDF). NASA.
  25. ^ Brian A. Maicke; Tony Saad; Joseph Majdalani. "On the compressible Hart-McClure and Sellars mean flow motions" (PDF). Physics of Fluids.
  26. ^ Majdalani, J., On Steady Rotational High Speed Flows: The Compressible Taylor-Culick Profile, Proceedings of the Royal Society, London, Series A, Vol. 463, No. 2077, January 2007, pp. 131-162. doi: 10.1098/rspa.2006.1755
  27. ^ Maicke, B. A. and Majdalani, J., On the Rotational Compressible Taylor Flow in Injection-Driven Porous Chambers, Journal of Fluid Mechanics, Vol. 603, May 2008, pp. 391-411. doi: 10.1017/S0022112008001122
  28. ^ "Dr. Majdalani Profile". majdalani.eng.auburn.edu.
  29. ^ Scott M. Munson; J. Arthur Sauer; Joshua D. Rocholl; Martin J. Chiaverini (August 2011). "Development of a Low-Cost Vortex-Cooled Thrust Chamber Using Hybrid Fabrication Techniques" (PDF). American Institute of Aeronautics and Astronautics.
  30. ^ Majdalani, J. and Chiaverini, M. J., Characterization of GO2-GH2 Simulations of a Miniature Vortex Combustion Cold Wall Chamber, Journal of Propulsion and Power, Vol. 33, No. 2, March 2017, pp. 387-397. doi: 10.2514/1.B36277
  31. ^ "AEDC".
  32. ^ "Recognition : The American Institute of Aeronautics and Astronautics". propulsionenergy.aiaa.org.
This page was last edited on 19 April 2024, at 16:01
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