APID Academic Profile Identity
Gadipelly Bhaskar

Dr. Gadipelly Bhaskar

Assistant Professor · mechanical engineering
Author
APID
11419
ORCID
0000-0003-1921-8248
Location
hyderabad, Telangana, India
Expertise
heat transfer
Areas of interest
Heat Transfer, Cfd, Gas Dynamics
Member since
November 2025

Biography

Dr. G. Bhaskar is an accomplished mechanical engineering academician with over 16 years of teaching experience and expertise in thermal engineering, heat transfer, CFD, and advanced manufacturing. He is currently an Assistant Professor at Methodist College of Engineering and Technology, Hyderabad, where he also coordinates the M.E CAD/CAM program.
He holds an M.Tech in Thermal Engineering from JNTU Hyderabad and a Ph.D. from K.L. University, where his doctoral work focused on optimizing heat pipe performance in heat exchangers using computational fluid dynamics and numerical analysis. His research contributions include multiple Scopus and SCI-indexed publications on heat pipes, gas turbine blade analysis, composite materials, and lattice structures, along with two published patents in aerodynamic car-body design and 3D printer design.
Dr. Bhaskar has organized and participated in numerous FDPs, workshops, and international conferences, and has established key laboratories—including Thermal Engineering, Heat Transfer, and Strength of Materials—at various institutions. Known for his positive attitude and adaptability, he has served in several academic leadership roles, including In-charge Head of Department in multiple engineering colleges.

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Publications

  1. CFD and Thermal Analysis of Gas Turbine Blades Using High Temperature Alloys and Ceramic Coatings
  2. Computational Fluid Dynamics and Analysis of Heat Exchanger Using Different Cross-Sections of Pipe
  3. Heat Transfer Analysis Using CFD Tools an Literature Based Review
  4. Investigating Temperature Effect on Thermal Analysis of Composite Heat Pipes with Diverse Geometrical Configurations
  5. Numerical Analysis and Comparison of Various Sections of Heat Pipe in Heat Exchanger
  6. Performance Analysis of Gas Turbine Blades Employing High-Temperature Alloys and Ceramic Protective Coatings
  7. Structural and Modal Analysis of Drive Axle with Material Optimization for Heavy Loads
  8. The Dissipation Properties of Additively Manufactured Lattice Frame Structure of Various Size by Dynamic and Thermal Analysis