MITS has secured NIRF India Ranking 2024 in the band 201 to 300.
Mr. A. Pruthvi Deep

Qualification : M.Tech., (Ph.D.) (NIT, Durgapur)

Designation : Asst. Professor

Details of Educational Qualification:

Course Specialization Group College Name/University Year of Passing
Ph.D. Mechanical Engineering Mechanical Engineering National Institute of Technology, Durgapur Thesis Submitted
M.Tech. Refrigeration & Air Conditioning Mechanical Engineering JNTU Anantapuramu 2014
B.Tech. Mechatronics Mechatronics SASTRA University, Thanjavur 2011

 

List of Publications

S.No Title of the Paper Full Details of Journal Name / Conference Name, Volume number, page number, Date
1 Thermodynamic analysis of a coal fired supercritical thermal power plant integrated with molten carbonate fuel cell powered by coal gasification. International Journal of Exergy. 2022;39(3):246-61. (SCIE Indexed) https://doi.org/10.1504/IJEX.2022.126546
2 Thermodynamic Analysis of a Reconfigured 500-MWe Supercritical Thermal Power Plant by Integrating Solid Oxide Fuel Cell and a Gas Turbine. Arabian Journal for Science and Engineering. 2022 Nov 25:1-5. (SCIE Indexed) https://doi.org/10.1007/s13369-022-07464-3
3 An equilibrium modelling and a parametric study of gasification process. International Journal of Global Warming. 2023; 31(1):1-3. (SCIE Indexed) https://doi.org/10.1504/IJGW.2023.133206
4 Thermodynamic and Economic Analysis of a Standalone Supercritical Thermal Power Plant Integrated with Molten Carbonate Fuel Cell. Energy Technology. 2024 Jan 12:2300941. (SCIE Indexed) https://doi.org/10.1002/ente.202300941

 

Book Chapters

  • Deep, A.P., Jena, A. and Karmakar, S., 2019. Thermodynamic Analysis of an Integrated Gasification Fuel Cell- Combined Cycle Power Plant Using Indian Coal. In Advances in Fluid and Thermal Engineering (pp. 781-792). Springer, Singapore.
  • More, A., Pruthvi Deep, A. and Karmakar, S., 2021. Thermodynamic Analysis of a 500 MW e Coal-Fired Supercritical Thermal Power Plant Integrated with Molten Carbonate Fuel Cell (MCFC) at Flue Gas Stream. In Proceedings of the 7th international conference on advances in energy research (pp. 645-654). Springer, Singapore.