Oct 14, 2019   11:08 a.m. Boris
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Course syllabus I1-TERM - Thermo mechanics (FCE - WS 2019/2020)


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University: Slovak University of Technology in Bratislava
Faculty: Faculty of Civil Engineering
Course unit code: I1-TERM
Course unit title: Thermo mechanics
Mode of delivery, planned learning activities and teaching methods:
lecture2 hours weekly (on-site method)
seminar1 hour weekly (on-site method)

 
Credits allocated: 4
 
Recommended semester/trimester: Building Services - master (compulsory), 1. semester
Level of study: 2.
Prerequisites for registration: none
 
Assesment methods:
solving problem sets
 
Learning outcomes of the course unit:
Students acquire knowledge main equations of energetic balances in heat equipments, about heat processes an properties of ideal and real substances in energetic equipments.
Students acquire knowledge in equations of heat conduction for plane and cylindrical surfaces, unsteady conduction of heat, convection heat transfer, and basic theory of similarity. Coefficient of heat transfer in laminar and turbulent fluid flow, in phase change processes, in boiling and condensation. Radiation heat transfer. Theory of heat exchangers.
 
Course contents:
• Subject, Methods and Basic Principles. Properties of State.
• The Ideal-Gas Equation of State. Basic Thermodynamics Processes. The Specific Heat. Gas Mixtures.
• The First Law of Thermodynamics Applied to Cycles. Efficiencies of Cycles.
• Equation of State for Real Substances.
• The Second Law of Thermodynamics. Heat Engines, Heat Engines and Refrigerators. The Carnot Cycle and Efficiency. Definition of Entropy.
• Gas Power Cycles. Vapor Power Cycles.
• Heat Transfer Processes, Classifications. Conductive Heat Transfer. Fourier's Law. Heat Diffusion Equation
• Convective Heat Transfer. Newton's Law of Cooling. Forced Convection and Free Convection Heat Transfer. Dimensionless Parameters.
• Radiation Heat Transfer. The Planck and Stefan-Boltzmann Laws. Radiation Heat Exchange between Blackbody and Diffuse Surfaces.
• Combined Heat Transfer. Heat Exchangers.
 
Recommended or required reading:
Basic:
KABÁT, E. -- HORÁK, M. Prenos tepla. Bratislava : STU v Bratislave, 2000. 129 p. ISBN 80-227-1409-7.
KABÁT, E. Termomechanika: Termokinetika. Bratislava : SVŠT v Bratislave, 1984. 176 p.
INCROPERA, F P. -- DEWITT, D P. -- BERGMAN, T. -- LAVINE, A S. Fundamentals of Heat and Mass Transfer. Hoboken : John Wiley & Sons, 2007. 997 p. ISBN 0-471-45728-0.
FERSTL, K. -- MASARYK, M. Prenos tepla. Bratislava : STU v Bratislave, 2011. 424 p. ISBN 978-80-227-3534-6.
WINTERBONE, D E. Advanced Thermodynamics for Engineers. London : Arnold A memeber of the Hodder Headline Group, 1997. 378 p. ISBN 0-340-67699-X.
CENGEL, Y A. -- BOLES, M A. Thermodynamics: An Engineering Approach. Boston : WCB/McGraw-Hill, 1998. 1010 p. ISBN 0-07-115247-4.
HAVELSKÝ, V. -- FÜRI, B. Chladenie: Základy techniky chladenia a tepelných čerpadiel. Bratislava : SVŠT v Bratislave, 1990. 255 p. ISBN 80-227-0250-1.
FÜRI, B. -- KURČOVÁ, M. Termomechanika. Cvičenia. Bratislava: Vydavateľstvo STU Bratislava, 2014. 350 p. ISBN 978-80-227-4132-3.

 
Language of instruction: slovak
 
Notes:
 
Courses evaluation:
Assessed students in total: 303

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76,6 %17,2 %5,3 %0,9 %0 %0 %
Name of lecturer(s): Ing. Gabriel Arbet, PhD. (instructor)
doc. Ing. Belo Füri, PhD. (examiner, instructor) - slovak, english
doc. Ing. Michal Masaryk, PhD. (examiner, lecturer, person responsible for course) - slovak, english
Ing. Ingrida Skalíková (examiner, instructor) - slovak, english
 
Last modification: 23. 3. 2019
Supervisor: doc. Ing. Michal Masaryk, PhD. and programme supervisor


Last modification made by Ing. Marián Dubík on 03/23/2019.

Type of output: