Thermal-Fluid Books

Thermodynamics

  • Fundamentals of Thermodynamics, Claus Borgnakke, Richard E. Sonntag, and G. J. Van Wylen.
  • Thermodynamics, Yunus A. Çengel, Michael A. Boles, and Mehmet Kanoğlu.
  • Advanced Engineering Thermodynamics, Adrian Bejan.
  • Advanced Thermodynamics Engineering, Annamalai Kalyan, Ishwar Puri, and Milind A. Jog.
  • Advanced Thermodynamics for Engineers, Desmond E. Winterbone, and Ali Turan.
  • Exergy: energy, environment and sustainable development, Ibrahim Dincer, and Marc A. Rosen.
  • Advanced Thermodynamics: Fundamentals, Mathematics, Applications, Mehrzad Tabatabaian, and R. K. Rajput.

Heat Transfer

  • Heat Transfer, J. P. Holman.
  • Fundamentals of Momentum, Heat, and Mass Transfer, J. Welty, G. L. Rorrer, and D. G. Foster.
  • Fundamentals of Heat and Mass Transfer, Frank P. Incropera, David P. Dewitt, Theodore L. Bergman, and Adrienne S. Lavine.
  • Heat and Mass Transfer: Fundamentals and Applications, Afshin J. Ghajar, and Yunus A. Çengel.
  • Essentials of Heat Transfer: Principles, Materials, and Applications, M. Kaviany.
  • Advanced Heat and Mass Transfer, Amir Faghri, Yuwen Zhang, and John R. Howell.
  • Numerical Heat Transfer and Fluid Flow, Suhas Patankar.
  • Computational Fluid Mechanics and Heat Transfer, Richard H. Pletcher, John C. Tannehill, and Dale Anderson.
  • Advanced Heat Transfer, Volume I, Conduction and Radiation, Ihsan Hussain.
  • Advanced Heat Transfer, Volume II, Convection and Mass Transfer, Ihsan Hussain.
  • Conduction Heat Transfer, Vedat S. Arpaci.
  • Heat Conduction, M. Necati Özışık.
  • Heat Conduction, Sadık Kakac, Yaman Yener, and Carolina P. Naveira-Cotta.
  • Convection Heat Transfer, Vedat S. Arpaci, and Poul Scheel Larsen.
  • Convection Heat Transfer, Adrian Bejan.
  • An Introduction to Convective Heat Transfer Analysis, P. H. Oosthuizen, and David Naylor.
  • Physical and computational aspects of convective heat transfer, Tuncer Cebeci, and Peter Bradshaw.
  • Convective Heat and Mass Transfer, W. M. Kays, M. E. Crawford, and B. Weigand.
  • Convective Heat Transfer, A. Cihat Baytaş.
  • Radiation Heat Transfer, Ephraim M. Sparrow, and R. D. Cess.
  • Essentials of Radiation Heat Transfer, C. Balaji.
  • Thermal Radiation, John R. Howell, M. Pınar Mengüc, and Kyle J. Daun.
  • Thermal Radiation Heat Transfer, John R. Howell, M. Pınar Mengüc, Kyle Daun, and Robert Siegel.
  • Radiative Heat Transfer, Michael F. Modest, and Sandip Mazumder.
  • Fundamentals of Heat Exchanger Design, Ramesh K. Shah, and Dusan P. Sekulic.
  • Heat Transfer Enhancement of Heat Exchangers, S. Kakaç, A. E. Bergles, F. Mayinger, and H. Yüncü.
  • Heat Transfer and Fluid Flow in Minichannels and Microchannels, Satish G. Kandlikar, Srinivas Garimella, Dongqing Li, Stéphane Colin, and Michael R. King.
  • Microfluidics Based Microsystems: Fundamentals and Applications, S. Kakaç, B. Kosoy, D. Li, and A. Pramuanjaroenkij.
  • Microscale and Nanoscale Heat Transfer, Mourad Rebay, Sadık Kakaç, and Renato M. Cotta.
  • Thermal Transport for Applications in Micro/Nanomachining, Basil T. Wong, and M. Pınar Mengüç.
  • Handbook of Porous Media, Kambiz Vafai.
  • Principles of Heat Transfer in Porous Media, M. Kaviany.
  • Introduction to Modeling of Transport Phenomena in Porous Media, Jacob Bear, and Yehuda Bachmat.
  • Convection in Porous Media, Donald A. Nield, and Adrian Bejan.
  • Heat Transfer Through a Porous Medium, Donald A. Nield, and Adrian Bejan.
  • Convective Heat Transfer in Porous Media, Yasser Mahmoudi, Kamel Hooman, and Kambiz Vafai.

Fluid Dynamics

  • Fluid Mechanics, Robert W. Fox, Alan T. McDonald, and Philip J. Pritchard.
  • Fluid Mechanics, Victor L. Streeter.
  • Fluid Mechanics, Frank M. White.
  • Fluid Mechanics, Pijush K. Kundu, Ira M. Cohen, David R. Dowling, and Jesse Capecelatro.
  • Fluid mechanics: fundamentals and applications, Yunus A. Çengel, and John M. Cimbala.
  • Fundamentals of Momentum, Heat, and Mass Transfer, J. Welty, G. L. Rorrer, and D. G. Foster.
  • Fundamentals of Aerodynamics, John D. Anderson.
  • Advanced Fluid Mechanics, William P. Graebel.
  • Viscous Fluid Flow, Frank M. White.
  • Boundary-layer theory, H. Schlichting, and K. Gersten.
  • An Introduction to Computational Fluid Dynamics, H. K. Versteeg, and W. Malalasekera.
  • Introduction to Computational Fluid Dynamics, Anil W. Date.
  • Computational Fluid Dynamics: The Basics with Applications, John D. Anderson.
  • Computational Fluid Dynamics: Principles and Applications, J. Blazek.
  • Computational Fluid Dynamics, T. J. Chung.
  • Numerical Heat Transfer and Fluid Flow, Suhas Patankar.
  • Computational Fluid Mechanics and Heat Transfer, Richard H. Pletcher, John C. Tannehill, and Dale Anderson.
  • Computational Methods for Fluid Dynamics, Joel H. Ferziger, and Milovan Peric.
  • Computational Fluid Dynamics, Volumes I, II, III, Klaus A. Hoffmann, and Steve T. Chiang.
  • Computational Methods for Fluid Flow, Roger Peyret, and Thomas D. Taylor.
  • Computational Modeling for Fluid Flow and Interfacial Transport, Wei Shyy.
  • The Finite Volume Method in Computational Fluid Dynamics, F. Moukalled, L. Mangani, and M. Darwish.