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Thermodynamics and Heat
BIEe47

Description
AIMS AND OBJECTIVES OF THE COURSE: The course is organized so that to build both theoretical background and practical skills necessary for understanding and further studies in the field of applied thermodynamics and heat transfer as well as solving of applied engineering problems.
DESCRIPTION OF THE COURSE: The course consists of four parts: Fundamentals of Thermodynamics, Application of Thermodynamics, Heat transfer fundamentals and Heat exchangers. The course program is correlated with the other subjects (inputs and outputs) related to both the Thermodynamics and the Heat transfer. The first part of the course covers the following main topics: fundamental concepts of thermodynamics; basic definitions and units; conservation of mass and energy; properties of pure substances; ideal and actual gases; non-reacting ideal gas mixtures and ideal gas water vapor mixtures; energy analysis of closed and open systems; the second law of thermodynamics and entropy. The second part of the course covers the following: air-standard cycles of internal combustion engines and gas turbines; vapor power cycles and combined cycles; refrigeration and air-conditioning cycles. The third part of the course deals with the basic modes of heat transfer (conduction, convection, and radiation) and some combined modes of heat transfer. The fourth part of the course covers topics related to tube-in-tube heat exchangers and shell and tube heat exchangers.

Crédits ECTS
5

Langue d'enseignement
English

Langue d'examen
English

Langue des supports pédagogiques
English

Acquis d'apprentissage fondamentaux
  • Knowledge of applied thermodynamics and heat transfer. Basic principles and their application to the resolution of engineering problems.
    (BE1 - IEB - Knowledge of applied thermodynamics and heat transfer. Basic principles and their application to the resolution of engineering problems.)

Acquis d'apprentissage terminaux
  • Perform calculations, demonstrations, and applications in industrial engineering based on knowledge of fundamental sciences.
    (F3 - IEB - Perform calculations, demonstrations, and applications in industrial engineering based on knowledge of fundamental sciences.)
  • Apply theory and principles of industrial engineering technologies for process design.
    (F4 - IEB - Apply theory and principles of industrial engineering technologies for process design.)

Catégorie de cours

Entité de gestion (faculté)