Dr. Goodarz  Ahmadi
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Dr. Goodarz Ahmadi

Dean
Clarkson University, USA


Highest Degree
Ph.D. in Mechanical Engineering from Purdue University, West Lafayette, USA

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Biography

Dr. Goodarz Ahmadi is currently working as Dean, Coulter School of Engineering, and Professor at Department of Mechanical and Aeronautical Engineering, Clarkson University. He has completed his Ph.D. in Mechanical Engineering from Purdue University, West Lafayette, USA. He has published more than 550 Journal Articles, 1100 Presentations at Technical Conferences and 150 Invited Lectures contributed as author/co-author. He was received more than $12 million research grants and contracts from DOE, AFOSR, EPA, NSF, NASA, NYSTAR, GE, IBM, Corning, Xerox, Kodak, Dura Pharmaceutical and etc. He is serving on the Editorial Board of eleven International Journals. He also developed an efficient computational model for Brownian diffusion of particles in laminar and turbulent flows; the method is now being used in FLUENT commercial code. He also contributed to the development of practical method for dilute two-phase flow analysis; the approach is being used to improve operation and design of engineering systems in several companies. Dr. Goodarz received honors Powder Technology of Japan Award, Tsukuba, Japan, Pi Tau Sigma Distinguished Teaching Award, University Outstanding Advisor Award, University Distinguished Teaching Award, Honorary Fellow of Iranian Society of Mechanical Engineers, Iranian Academy of Science, and fellow of Iranian Society of Civil Engineers (ISCE), Clarkson Distinguished Professor, Clarkson University, and Membership to Five Million Dollar Club Clarkson University.

Area of Interest:

Engineering
100%
Civil Engineering
62%
Mechanical Engineering
90%
Chemical Engineering
75%
Fluid Mechanics
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
0
Abstracts
0

Selected Publications

  1. Togun, H., G. Ahmadi, T. Abdulrazzaq, A.J. Shkarah, S.N. Kazi, A. Badarudin and M.R. Safaei, 2015. Thermal performance of nanofluid in ducts with double forward-facing steps. J. Taiwan Inst. Chem. Eng., 47: 28-42.
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  2. Tavakol, M.M., O. Abouali, M. Yaghoubi and G. Ahmadi, 2015. Stochastic dispersion of ellipsoidal fibers in various turbulent fields. J. Aerosol Sci., 80: 27-44.
    CrossRef  |  Direct Link  |  
  3. Jafari, M., Z. Mansoori, M.S. Avval and G. Ahmadi, 2015. The effects of wall roughness on erosion rate in gas-solid turbulent annular pipe flow. Powder Technol., 271: 248-254.
    CrossRef  |  Direct Link  |  
  4. Bozorgnezhad, A., M. Shams, H. Kanani, M. Hasheminasab and G. Ahmadi, 2015. The experimental study of water management in the cathode channel of single-serpentine transparent proton exchange membrane fuel cell by direct visualization. Int. J. Hydrogen Energy, 40: 2808-2832.
    CrossRef  |  Direct Link  |  
  5. Behzad, F., B.T. Helenbrook and G. Ahmadi, 2015. On the sensitivity and accuracy of proper-orthogonal-decomposition-based reduced order models for Burgers equation. Comput. Fluids, 106: 19-32.
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  6. Sadri, R., G. Ahmadi, H. Togun, M. Dahari, S.N. Kazi, E. Sadeghinezhad and N. Zubir, 2014. An experimental study on thermal conductivity and viscosity of nanofluids containing carbon nanotubes. Nanoscale Res. Lett., Vol. 9. 10.1186/1556-276X-9-151.
    CrossRef  |  Direct Link  |  
  7. Naseri, A., O. Abouali, P.F. Ghalati and G. Ahmadi, 2014. Numerical investigation of regional particle deposition in the upper airway of a standing male mannequin in calm air surroundings. Comput. Biol. Med., 52: 73-81.
    CrossRef  |  Direct Link  |  
  8. Modarreszadeh, S.A., O. Abouali, A. Ghaffarieh and G. Ahmadi, 2014. Physiology of aqueous humor dynamic in the anterior chamber due to rapid eye movement. Physiol. Behavior, 135: 112-118.
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  9. Hosseini, S.H., G. Ahmadi and M. Olazar, 2014. CFD study of particle velocity profiles inside a draft tube in a cylindrical spouted bed with conical base. J. Taiwan Inst. Chem. Eng., 45: 2140-2149.
    CrossRef  |  Direct Link  |  
  10. Goldasteh, I., Y. Tian, G. Ahmadi and A.R. Ferro, 2014. Human induced flow field and resultant particle resuspension and transport during gait cycle. Build. Environ., 77: 101-109.
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  11. Ghahramani, E., O. Abouali, H. Emdad and G. Ahmadi, 2014. Numerical analysis of stochastic dispersion of micro-particles in turbulent flows in a realistic model of human nasal/upper airway. J. Aerosol Sci., 67: 188-206.
    CrossRef  |  Direct Link  |  
  12. Barati, R., S.A.A.S. Neyshabouri and G. Ahmadi, 2014. Development of empirical models with high accuracy for estimation of drag coefficient of flow around a smooth sphere: An evolutionary approach. Powder Technol., 257: 11-19.
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