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Thermodynamics and Transport Phenomena

Code 12931
Year 2
Semester S2
ECTS Credits 6
Workload TP(60H)
Scientific area Mechanics and Thermodynamics
Entry requirements Do not exist.
Learning outcomes This curricular unit aims to study the principles of applied thermodynamics, fluid transport and heat transmission. It is intended that the student learns to deal with situations that require the analysis of thermodynamic systems.
Syllabus 1 - Fundamental concepts of thermodynamics. First principle of thermodynamics; energy analysis; second principle of thermodynamics, exergetic analysis.
2 - Energy conversion and fluid transport. Steam cycles; gas cycles; cooling systems and heat pumps; fundamental concepts of fluid mechanics; static; incompressible internal flows.
3 - Psychrometry. Principles; conservation of mass and energy; adiabatic saturation; wet bulb temperature; psychrometric processes.
4 - Reactive mixtures and combustion. Combustion processes; energy conservation in reactive processes; adiabatic flame temperature; combustion process efficiency.
5 - Heat transmission. Heat conduction; heat convection; thermal radiation; combined modes.
Main Bibliography - Fundamentos de Termodinâmica Aplicada, P. Pimentel de Oliveira, 2.ª Edição, Lidel.
- Fundamentals of Engineering Thermodynamics, Michael J. Moran, Howard N. Shapiro, Daisie D. Boettner, Margaret B. Bailey, 9th Edition, John Wiley & Sons, Inc.
- Introduction to Heat Transfer, Theodore L. Bergman, Adrienne S. Lavine, Frank P. Incropera, David P. DeWitt, 6th Edition, John Wiley & Sons, Inc.
- Introduction to Fluid Mechanics, Robert W. Fox; Alan T. McDonald; Philip J. Pritchard, 6th Edition, John Wiley & Sons,Inc.
Language Portuguese. Tutorial support is available in English.
Last updated on: 2021-07-05

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