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Terminated in academic year 2020/2021

Modeling of Building Physical Phenomena

Type of study Follow-up Master
Language of instruction English
Code 229-0267/02
Abbreviation MSFJ
Course title Modeling of Building Physical Phenomena
Credits 3
Coordinating department Department of Building Environment and Building Services
Course coordinator doc. Ing. Iveta Skotnicová, Ph.D.

Subject syllabus

1. Heat , basic concepts and laws , heat conduction, boundary conditions, sharing examples of heat conduction
2. Heat transfer by convection and radiation , examples
3. analytical solution determine the lowest internal surface temperature structure of thermal transmittance ( HEAT 2011 DEKTRADE )
4. Numerical modeling of structures in a graphical preprocessor (2D ) lowest surface temperature on the surface structure (AREA 2011) , the award program
5. Numerical modeling of structures in a graphical preprocessor (2D ) - thermal bridges , thermal bonding, heat transfer coefficient, linear thermal transmittance
6. issue of 3D modeling and comparison with 2D ( CUBE3D ) .
7 to 9 unsteady thermal state - numerical modeling of structures in ANSYS , CALA Professional
10 to 11 Analytical calculation and modeling hygrothermal behavior of building structures - the program TEPLO 2011 AREA 2011 WUFI .
12. -13. Simulation calculation of indoor environmental quality - program SIMULATION 2011.
14. Credit

Literature

Hens, H. Building Physics - Heat, Air and Moisture: Fundamentals and Engineering Methods with Examplesand Exercises, Wilhelm Ernst&Sohn, Berlin 2012, pp. 330. ISBN: 978-3-433-03027-1
Hens, H. Applied Building Physics, Wilhelm Ernst&Sohn, Berlin 2011, pp. 308. ISBN: 978-3-433-02962-6.

Advised literature

Hens, H. Performance Based Building Design 2: From Timber-framed Construction to Partition Walls, Wilhelm Ernst&Sohn, Berlin 2012, pp. 292. ISBN: 978-3-433-03023-3 .