Heat Transfer
Springer International Publishing (Verlag)
978-3-031-80317-8 (ISBN)
This book presents the core principles of heat and mass transfer in a clear and structured manner, making it ideal for engineering courses across various disciplines. Covering both fundamental and advanced concepts, it systematically explores conduction, convection, and radiation for heat transfer, as well as mass diffusion and convection for mass transfer. The first eleven chapters focus on heat transfer, addressing steady-state and transient conduction, forced and natural convection, phase change phenomena, heat exchanger design, and thermal radiation. The final chapter introduces mass transfer to maintain thematic continuity. Throughout the book, theoretical explanations are complemented by practical applications, numerical methods, and numerous solved and proposed problems many drawn from real exam questions. With over 30 years of teaching experience, the first author brings deep expertise to the subject, ensuring a pedagogical approach that supports both learning and problem-solving skills.
José Roberto Simões Moreira Graduated in Mechanical Engineering from Escola Politécnica da USP (1983), Master in Mechanical Engineering from the same institution (1989), PhD in Mechanical Engineering - Rensselaer Polytechnic Institute (1994), Post-Doctorate in Mechanical Engineering at the University of Illinois at Urbana-Champaign (1999). He has experience in the area of Thermal Engineering, working mainly on the following topics: liquid-vapor phase change, use and processing of fuel gas, absorption refrigeration, vortex tubes, solar energy, solar fuels, heat absorption cycles and alternative systems of energy transformation. He has acted as a technical reviewer for several national and international congresses, symposiums, and scientific journals. Teach courses in Thermodynamics, Heat Transfer, Compressible Flow, Transients in Thermofluid Systems and Cogeneration Systems, Refrigeration, Fundamentals of Solar Engineering, Fundamentals of Renewable Energies and Use of Energy and Energy Conversion Machines and Processes. He currently coordinates a specialization course at USP entitled Renewable Energy, Distributed Generation and Energy Efficiency since 2011.He was a visiting scientist in September 2007 at the Ecole Polytechnique Federale de Lausanne (Switzerland) within the ERCOFTAC-European Research Community On Flow, Turbulence And Combustion program. He participated in the ARCUS Project in the area of two-phase in collaboration with France. He was a visiting professor at INSA-Institut National des Sciences Appliquées in Lyon (France) in June and July 2009. He has developed technological projects sponsored by many industries. He holds two patents. He is the author of more than 120 technical-scientific articles, in addition to being the author of books and chapters: (1) author of "Fundamentals and Applications of Psychrometry" - editorial RPG (1999) and 2nd edition (2019) with co-author A. Hernandez Neto; (2) author of a chapter in the book "Thermal Power Plant Performance Analysis" (2012); (3) author and editor of the book "Renewable Energies, Distributed Generation and Energy Efficiency" - LTC (2017) and 2nd edition (2021) which has 32 authors and co-authors; co-author of "Fundamentals of Heat Transfer in Engineering" - LTC (2023). He has already supervised 22 masters and 8 doctors, in addition to around 40 undergraduate course completion works and several monographs for specialization and extension courses, as well as scientific initiation works, totaling more than 100 works. He has more than 120 publications, including national and international technical-scientific journals. Finally, he coordinates the laboratory and research group at EPUSP called SISEA-Lab for Alternative and Renewable Energy Systems.
Elí Wilfredo Zavaleta Aguilar Mechanical Engineer graduated from the National University of Trujillo (Peru, 2007), Master in Mechanical Engineering from the Polytechnic School at University of São Paulo (Brazil, 2010), PhD in Energy from the Institute of Energy and Environment at the University of São Paulo (2015). He is an assistant professor at the Institute of Sciences and Engineering at São Paulo State University (Brazil). His teaching experience at undergraduate and graduate levels includes Thermodynamics, Heat Transfer, Mass Transfer, Fluid Mechanics, and Solar Energy. He coordinates research and extension projects in the Solar Energy area. He is a researcher recognized by the Peruvian National Council for Science, Technology, and Innovation. He is the author of several scientific articles, book chapters, and a book. His research are as include concentrated solar energy, ammonia-water absorption refrigeration cycles, and solar photovoltaic applications.
Introduction: Heat and mass transfer modes.- Steady state one-dimensional heat conduction.- Steady-state multidimensional heat conduction.- Heat conduction in transient regime.- External forced convection.- Internal forced convection.- Natural convection.- Condensation and boiling.- Heat exchangers.- Fundamentals of thermal radiation.- Applied thermal radiation.- Mass transfer.
| Erscheinungsdatum | 28.09.2025 |
|---|---|
| Reihe/Serie | Heat and Mass Transfer |
| Zusatzinfo | XXI, 587 p. 433 illus., 115 illus. in color. |
| Verlagsort | Cham |
| Sprache | englisch |
| Maße | 155 x 235 mm |
| Themenwelt | Technik ► Elektrotechnik / Energietechnik |
| Technik ► Maschinenbau | |
| Schlagworte | forced convection • Heat and mass transfer modes • heat conduction • mass transfer • thermal radiation |
| ISBN-10 | 3-031-80317-5 / 3031803175 |
| ISBN-13 | 978-3-031-80317-8 / 9783031803178 |
| Zustand | Neuware |
| Informationen gemäß Produktsicherheitsverordnung (GPSR) | |
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