Course detail
Computer Aided Building Physics (S-PST)
FAST-CH03Acad. year: 2015/2016
Real recovery software for Building Physics in the design and construction assessment in accordance with applicable legislation.
In particular, the assessment of structures in terms of thermal and acoustic techniques
Verification of thermal comfort, sound and light microclimate of buildings.
The calculation and design is to optimize the structural design of the building envelope and the doors and windows, including the resolution of structural details.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Learning outcomes of the course unit
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Course curriculum
2en Practical use of software for building heat engineering solution of one-dimensional temperature field for the unsteady state
3rd to 4th Modelling and assessment of selected detail using a two-dimensional temperature field.
5th to 6th Thermal stability of a room - a critical assessment of the room in terms of maximal increase of temperature and a maximum temperature of a room in summer
7th Functional requirements of the day and insolation of buildings
8th Rating daylight factor
9th Structural and energetic properties of the building, the heat transfer through the building envelope
10th Energy performance of buildings
11th Functional requirements for acoustics
12th Rating insulation separating structures
13th Verifying the suitability of design of structures including doors and windows in terms of building physics (overall concept of the building and individual design - optimization requirements in terms of thermal physics, acoustics, daylighting and insolation of buildings)
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
ČSN 73 0540-1 až 4 – Tepelná ochrana budov. 2005. (CS)
Halahyja,M. a kol.: Stavební tepelná technika, akustika a osvětlení. ALFA, SNTL, 1985. (CS)
Kulhánek, Tywoniak: Stavební fyzika 20, Stavební tepelná technika. ČVUT praha, 1997. (CS)
Lukašík a kol.: Akustika a denní osvětlení v pozemním stavitelství. ES VUT, 1989. (CS)
Směrnice Evropského parlamentu a rady 2002/91/ES. O energetické náročnosti budov (EPBD). 2002. (CS)
Weiglová: Denní osvětlení. ČVUT Praha, 1997. (CS)
Zákon č.406/2000 Sb. o hospodaření energií a jeho prováděcí vyhlášky. 2000. (CS)
Recommended reading
Čuprová,Mohelníková,Čupr: Denní osvětlení budov-Návody pro cvičení. CERM Brno, 2002. (CS)
Donaťáková,D., Berka,P.: Akustika - Návody pro cvičení. CERM Brno, 2001. (CS)
Maekawa,Lord: Environmental and Architectural Actoustics. EaFN, 1992. (EN)
Vaverka a kol.: Urbanistická stavební a prostorová akustika. VUT Brno, 1998. (CS)
Vaverka, Chybík, Sedlák: Energetické hodnocení budov a tepelná pohoda vnitřního prostředí. VUZ Brno, 1992. (CS)
Classification of course in study plans