NIST UNIVERSITY
Institute Park, Berhampur, Odisha-761008, India

Alok Patra

Mr. Alok Patra

Assistant Professor

Mechanical Engineering (SCHOOL OF ENGINEERING)

alok.patra@nist.edu
8596949492
CORE - 402

Education

B.Tech in Mechanical Engineering
SMIT,Berhampur (BPUT, Rourkela)
2010-05-01
M.Tech in Thermal Engineering
NIT Silchar, Assam
2014-05-01

Work Experience

Assistant Professor
NIST Autonomous Berhampur
Teaching Assistant
NIT ,Silchar(2013-2014)

Research Interests

  • Renewable Energy
  • I.C engine
  • Bio fuel
  • Solar Energy
  • Fluid flow

Publications

  1. Panda S. and Patra A. (2021), ‘Determination of coefficient of contraction of orifice with variation of geometrical parameter’, Theoretical, Computational, and Experimental Solutions to Thermo-Fluid Systems. Singapore: Springer, pp. 413–421. doi:10.1007/978-981-33-4165-4_38.
  2. Santosh Kumar Panda, Alok Patra, Binay Kumar Maharana, Abhilash Nayak, Nishant Bhagat, Determination of coefficient of contraction of orifice with variation of geometrical parameter, International Conference on Innovations in Thermo-Fluid Engineering and Sciences [ICITFES - 2020], NIT Rourkela, India, 10-12 February 2020, Paper ID- 13823
  3. Khuntia A.K., Misra S., Patra A. and Panda S.K. (2023), 'Determination of pressure drop across a circular orifice for two-phase flow using machine learning techniques', Flow Measurement and Instrumentation, Volume(94), https://doi.org/10.1016/j.flowmeasinst.2023.102478
  4. Misra S., Patra A. and Panda S.K. (2024), 'Positivity preserving analysis of central schemes for compressible Euler equations’, Computational Thermal Sciences, 16(5), pp. 1–13. doi:10.1615/ComputThermalScien.2024049154.
  5. Patra A., Misra S. and Panda S.K. (2023), ‘Heat transfer and psychometric analysis of a counter-flow wet cooling tower’, Heat Transfer Research, 54(12), pp. 81–93. doi:10.1615/HeatTransRes.v54.i12.50
  6. Khuntia A.K., Patra A., Misra, S. and Panda S.K. (2025) ‘Analysis of a flow through a crescent orifice by using machine learning’, AIP Conference Proceedings, 3325, 050019. doi:10.1063/5.0291658.
  7. Panda S., Patra A., Khuntia A.K. and Mohanty S.K. (2025) ‘Heat transfer from blower through bend pipe with machine learning algorithm’, WSEAS Transactions on Heat and Mass Transfer, 20, pp. 45–54. doi:10.37394/232012.2025.20.5
  8. Vijaybabu T.R., Mohini B., Patra A. and Louhichi B. (2026) ‘Electrothermal convection from a hexagonal body: LB simulations and machine learning predictions’, Thermal Science and Engineering Progress, 71, p. 104575. https://doi.org/10.1016/j.tsep.2026.104575
  9. Patra A., Khuntia A.K., Misra S. and Panda S.K. (2026), ‘Flow measurement using vortex strength method’, AIP Conference Proceedings, 3341, 020018. https://doi.org/10.1063/5.0320212
  10. Khuntia A.K., Panda S.K., Misra, S. and Patra A. (2025) ‘Flow measurement through orifice-metre with decision tree regression method’, IET Digital Transformation. https://doi.org/10.1049/dgt2.70006