Course detail
Physics of Building Materials
FAST-BJ06Acad. year: 2012/2013
The subject contents is divided into three parts. The part of physical properties of materials, of building mechanics and of the moisture propagation. Further to getting knowledge for students the theory of this subject is extended to general information of physics, knowledge of building materials using some mathematical procedures. In the subject PBM especially the theory of heat transfer, of vapour diffusion and of humidity propagation and the air penetration through the structure of building materials is discussed with respect to the specific properties of this materials. Included is the non-homogenous arrangement in building fragments under steady and dynamic influence of the surroundings. By general principles of heat and moisture transfer the standard evaluation criteria of building structures are explained. The main principles of building structures and buildings proposals are included as well. The program of the subject contains chapters concerning experimental possibilities of the determination of material properties of building materials, the documentation of standard and binding properties for the proposal. The exercise has partly a laboratory and partly a calculation character.
Language of instruction
Number of ECTS credits
Mode of study
Department
Learning outcomes of the course unit
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
The test is compulsory written part where the student demonstrates the ability to resolve two separate examples of the theory of heat and humidity. To proceed to compulsory oral is necessary to achieve at least a third points of 6 possible. To pass the oral examination is necessary to answer two questions in the case of a tie, a student asked additional questions.
Course curriculum
2.Heat-technical properties of building materials.
3.The condition of the material, heat-insulating properties of building materials.
4.Air, air layers.
5.Stationary and non-stationary heat transmission.
6.Thermal bridges, hygienic criterion of their effect.
7.Moisture sources in building structures.
8.Humid air, air vapour diffusion.
9.Moisture properties of materials.
10.Annual moisture balance.
11.Evaluation criteria of building structures. Standard conditions.
12.Air permeability, infiltration.
13.Thermal stability, energetic demands of building structures. Experimental heat-technical methods.
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
Recommended reading
Hopkinson, R.G.: Architectural Physics. London H.M.S.O., 1983. neuvedeno. (EN)
Lutz, Jenisch, u.a.: Lehrbuch der Bauphysik. Teubner-Verlag, 1999. neuvedeno. (DE)
Mohl, Heinz: Buildings and Projects. Builder’s Inc.,, 1994. ISBN: 3930698005. (EN)
Šťastník, S., Zach, J: Stavební akustika a zvukoizolační materiály. CERM, Brno, 2002. 80-214-2117-7. (CS)
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2.Heat-technical properties of building materials.
3.The condition of the material, heat-insulating properties of building materials.
4.Air, air layers.
5.Stationary and non-stationary heat transmission.
6.Thermal bridges, hygienic criterion of their effect.
7.Moisture sources in building structures.
8.Humid air, air vapour diffusion.
9.Moisture properties of materials.
10.Annual moisture balance.
11.Evaluation criteria of building structures. Normative conditions of national and European technical legislation.
12.Air permeability, infiltration.
13.Thermal stability, energetic demands of building structures. Experimental heat-technical methods.
Exercise
Teacher / Lecturer
Syllabus
2.testing of thermal conductivity of Bock's method
3.testing of the coefficient of thermal conductivity,
4.testing of distribution of temperature field elektroanalogickou method
5.testing of temperature attenuation and phase delay in the wall,
6.testing of relative humidity and moisture determination porous sample construction materials using the indirect method,
7.solwing and assessment of the thermal resistance of the multilayer wall
8.Calculation thermal resistance of the air layer,
9.Calculation temperature attenuation structures,
10.risk calculation of internal moisture accumulation in the wall,
11.Calculation intensity of internal condensation in the wall,
12.years moisture balance in the wall,
13.Completation of obligations in the exercise test.