Dr. Rama S. Gorla

Professor of Aerospace Engineering

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Contact:
Comm: (937) 255-6565 x 7476
DSN: 785-6565 x 7476
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Awards

  1. Life Fellow ASME
  2. Fenn Distinguished Research Professor, 2008
  3. The Distinguished Technical Educator Award from the Cleveland Technical Societies Council on May 17, 2006.
  4. Distinguished Faculty Teaching Award from Cleveland State University in 2004
  5. Teaching Excellence Award from the Northeast Ohio Council on Higher Education in 2004
  6. Distinguished Faculty Research Award from Cleveland State University in 1999

Publications

  1. Roy, N.C. and Gorla, R.S.R., “Natural Convection of Reacting Chemical in Square Enclosure with Circular Cylinder,” AIAA Journal of Thermophysics and Heat Transfer, 2021.
     
  2. Siddiqa, S., Rafiq, M., Begum, N., Hossain,M.A. and Gorla, R.S.R., “Nonliear Radiation Effect on Dusty Fluid Flow Near a Rotating Blunt Body,” Journal of Process Mechanical Engineering, Proceedings of the Institution of Engineers (England), 2021.
     
  3. Padmaja, P., Aparna, P. and Gorla, R.S.R., “An Initial Value Technique for Self-Adjoint Singularly Perturbed Two-Point Boundary Value Problems,” International Journal of Applied Mechanics and Engineering, Vol. 25, 2020, pp. 106-126.
     
  4. Siddiqa, S., Rafiq, M., Begum, N., Hossain, M.A. and Gorla, R.S.R., “Non-Linear Radiation Effect on Dusty Fluid Flow near a Rotating Blunt-Nosed Body,” ASME Journal of Heat Transfer, Vol. 139, 2019.
     
  5. Siddiqa, S., Begum, N., Hossain, M.A., Shoaib, M. and Gorla, R.S.R., “Radiative Heat Transfer Analysis of Non-Newtonian Dusty Casson Fluid Flow along a Complex Wavy Surface,” Numerical Heat Transfer, Part A: Applications, 2018.
     
  6. Begum, N., Siddiqa, S., Muqaddass, N., Hossain, M.A. and Gorla, R.S.R., “Influence of Surface Radiation on Dusty Fluid along a Vertical Isothermal Wavy Wall,” AIAA Journal of Thermophysics and Heat Transfer, 2018.
     
  7. Roy, N.C., Hossain, M.A. and Gorla, R.S.R., “Effect of Streamwise Surface Temperature Variations on the Combustible Boundary-Layer Flows along Inclined Hot Surfaces,” AIAA Journal of Thermophysics and Heat Transfer, 2018.
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Air Force Institute of Technology
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