Semester 2 · 45552 · Master in Energy Engineering · 12CP · EN
Lecturers: Marco Baratieri, Francesco Patuzzi, Massimiliano Renzi
Teaching Hours: 72
Lab Hours: 48
Mandatory Attendance: Attendance not mandatory
Slides and material provided by the professors on the Teams channel.
G. Rogers, Y. Mayhew. Engineering Thermodynamics: Work and Heat Transfer. LongmaN Scientific. F. P. Incropera, D.P. DeWitt, T. L. Bergman, A. S. Lavine. Fundamentals of Heat and Mass Transfer. John Wiley & Sons. J.M. Smith, H. C. Van Ness, M. Abbott. Introduction to Chemical Engineering Thermodynamics. McGraw-Hill Series in Civil and Environmental Engineering. J. Warnatz, U. Maas, R. W. Dibble. Combustion: Physical and Chemical Fundamentals, Modeling and Simulation, Experiments, Pollutant Formation. Springer. H. Spliethoff, Power generation from solid fuels. Springer. R. Kehlhofer, F. Hannemann, F. Stirnimann, B. Rukes, Combined cycle Gas and Steam Turbine Power Plants, PennWell, 2009. J. Heywood, Internal Combustion Engine Fundamentals, Mcgraw Hill, 1988. G. Negri di Montenegro, M. Bianchi, A. Peretto, Sistemi energetici e loro componenti. Considerazioni teoriche e valutazioni numeriche, Pitagora Editrice, Bologna, 2003. S. Sandrolini, G. Naldi, Macchine. Vol. 3: Gli impianti motori termici e i loro componenti, Pitagora Editrice, Bologna, 2003. Further Information Connections with other courses: The courses “Applied Energetics” and “Fluid Machines
Sustainable Development Goals
This teaching activity contributes to the achievement of the following Sustainable Development Goals.
Semester 2 · 45552A · Master in Energy Engineering · 6CP · EN
Lecturers: Massimiliano Renzi
Teaching Hours: 36
Lab Hours: 24
Slides of the course and additional material provided by the lecturer.
Semester 2 · 45552B · Master in Energy Engineering · 6CP · EN
Lecturers: Marco Baratieri, Francesco Patuzzi
Teaching Hours: 36
Lab Hours: 24
Slides of the courses