Course Unit Code | 635-2033/01 |
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Number of ECTS Credits Allocated | 4 ECTS credits |
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Type of Course Unit * | Compulsory |
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Level of Course Unit * | First Cycle |
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Year of Study * | Second Year |
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Semester when the Course Unit is delivered | Winter Semester |
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Mode of Delivery | Face-to-face |
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Language of Instruction | Czech |
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Prerequisites and Co-Requisites | Course succeeds to compulsory courses of previous semester |
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Name of Lecturer(s) | Personal ID | Name |
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| PYS30 | prof. Dr. Ing. René Pyszko |
| MAC589 | Ing. Mario Machů, Ph.D. |
Summary |
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The subject deals with basic laws of thermodynamics, state quantities of ideal gases. Explains quantities heat, work, technical work. Further topics are equation of states, mixtures of gases, basic changes in the states of ideal gases, entropy, thermodynamic diagrams, reversible and irreversible changes, Carnot's cycle, open systems, real gases and vapors, basic calculations of humid air processes, thermodynamics of gas flow, cycles of thermal motors and turbines, compression, reversed cycles, heat pumps, steam thermal circuits. |
Learning Outcomes of the Course Unit |
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Student will be able:
- to use laws of ideal gases for solving problems,
- to solve tasks on gas mixtures,
- to characterize the properties of real gases,
- to solve thermal cycles,
- to solve flowing through nozzles,
- to know the basics of humid air theory,
- to use water steam tables and diagrams.
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Course Contents |
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• The first law of thermodynamics, heat, work, state quantities of ideal gases.
• Mixtures of gases.
• Enthalpy, technical work. Basic changes in the p-v diagram.
• Entropy. The second law of thermodynamics, reversible and irreversible processes.
• Carnot's cycle.
• Basic changes in the T-s diagram.
• Real gases and vapors. Evaporation and condensation. Water vapor diagrams.
• Humid air, Mollier diagram. Basic calculations of humid air processes.
• Thermodynamics of gas flow.
• Heat circulations of thermal motors, gas turbines, rocket motor.
• Compressors.
• Reversed cycle, heat pumps, cooling systems.
• Steam thermal circuits.
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Recommended or Required Reading |
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Required Reading: |
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[1] JÍLEK, M. Thermomechanics. Praha: ČVUT, 2016.
[2] JÍLEK, M. Exercises and Labs in Thermomechanics. Praha: ČVUT, Fakulta strojní, 2012. 3. vydání. ISBN 978-80-01-05086-6.
[3] BEJAN, A., KRAUS, A. D. Heat Transfer Handbook. John Wiley & Sons, 2003. ISBN 978-0-471-39015-2.
[4] KREITH., F., BLACK, W. Z. Basic heat transfer. New York: Harper and Row, 1980. |
[1] PAVELEK, M. aj. Termomechanika. 1. vyd., Brno : CERM, 2003. 284 s.
[2] BRESTOVIČ, T., ČARNOGURSKÁ, M. Zdroje a premeny energie. Košice: TU v Košicích, 2012. ISBN 978-80-553-1013-8.
[3] HLOUŠEK, J. aj. Termomechanika. 1. vyd., Brno : Nakladatelství VUT, 1991. 297 s.
[4] BLAHOŽ, V., LAPČÍK, V.: Návody do cvičení z termomechaniky. Ostrava: VŠB 1987. 221 s.
[5] KRAUSE, E. Fluid Mechanics. Berlin: Springer Verlag, 2005. ISBN 3-540-22981-7.
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Recommended Reading: |
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[1] MORAN, M.J.; SHAPIRO, H.N. Fundamental of Engineering Thermodynamics. 2.vyd. New York : John Wiey & Sons, Inc.,1992. ISBN 0471076813.
[2] POLING, B. E.; PRAUSNITZ, J.M. The properties of gases and liquids. McGraw-Hill, 2001.
[3] MICHAELIDES, E. Alternative Energy Sources. Heidelberg. Springer, 2012. ISBN 978-3-642-20950-5. |
[1] ČARNOGURSKÁ, M., PIATNIČKA, I. Termomechanika – Návody na riešenie príkladov z termomechaniky. Bratislava: Alfa, 1987.
[2] PŘÍHODA, M., RÉDR, M. Sdílení tepla a proudění. 2. vyd. Ostrava: VŠB-TU Ostrava, 2008. ISBN 978-80-248-1748-4.
[3] JUREČKA, P. Proudění a sdílení tepla: cvičení do předmětu "Sdílení tepla a proudění“. 1. vyd. Ostrava: VŠB-TU Ostrava, 2006. ISBN 80-248-1083-2. |
Planned learning activities and teaching methods |
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Lectures, Seminars, Individual consultations, Tutorials |
Assesment methods and criteria |
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Task Title | Task Type | Maximum Number of Points (Act. for Subtasks) | Minimum Number of Points for Task Passing |
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Credit and Examination | Credit and Examination | 100 (100) | 51 |
Credit | Credit | 25 | 15 |
Examination | Examination | 75 | 36 |