Course detail
Room acoustics (S-PST)
FAST-CH52Acad. year: 2013/2014
The acoustic theory of an enclosed space. Direct and reflected sound wave field. Acoustic comfort criteria for buildings. Noise characteristics in the room acoustics, noise and vibration. Basic calculations of noise reduction, ways of noise reduction. Noise measuring instruments, measuring methods in the room acoustics.
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
2. Acoustic quality criteria of enclosed spaces - voice intelligibility, optimal reverberation time, diffusion of the sound field.
3.-4. Direct and reflected sonic wave field. Even distribution of sound pressure levels in a space.
5.-6. A design of optimal dimensions and space shapes based on the calculation of natural vibration density
7. Wave, geometrical and statistical acoustics.
8.-9. The real assessment of a classroom and its reverberation time calculation from the point of view to ensure the speech quality including classroom adjustments
10. Traffic noise measurement, noise study.
11. Evaluation nois of the programme HLUK+.
12.- 13. Verification of calculations by a device measurement according to the methodical instructions for measurements and evaluations in the field of building acoustics
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 05 25 Akustika – Projektování v oboru prostorové akustiky – Všeobecné zásady. 0. (CS)
ČSN 73 0525 Akustika – Projektování v oboru prostorové akustiky – Všeobecné zásady. 0. (CS)
Donaťáková,D., Berka,P.: Akustika-Návody pro cvičení. CERM Brno, 2001. (CS)
Lukašík a kol.: Akustika a denní osvětlení v pozemním stavitelství. ES VUT, 1989. (CS)
Maekawa, Lord: Environmental and Architectural Actoustics. EaFN, 1992. (EN)
Nařízení vlády č.148/2006 Sb. o ochraně zdraví před nepříznivými vlivy hluku a vibrací. 2006. (CS)
Vaverka a kol.: Urbanistická stavební a prostorová akustika. VUT Brno, 1998. (CS)
Recommended reading
FICKER, Tomáš: Handbook of Building Thermal Technology, Acoustics and Daylighting. CERM, 2004. ISBN 80-214-2670-5. (EN)
Halahyja,M.: Stavební tepelná technika, akustika a osvětlení. ALFA, SNTL, 1985. (CS)
Classification of course in study plans
- Programme N-K-C-SI Master's
branch S , 1 year of study, summer semester, elective
- Programme N-P-C-SI Master's
branch S , 1 year of study, summer semester, elective
- Programme N-P-E-SI Master's
branch S , 1 year of study, summer semester, elective
- Programme ARCHURB Bachelor's
branch ARCH , 1 year of study, summer semester, elective
- Programme ARCHURB Master's
branch ARCH , 1 year of study, summer semester, elective
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2. Acoustics wave, geometric and statistical theory. Design of optimal size and shape of the room in accordance with the theory of wave and geometric acoustics.
3. Materials and components for room acoustics. Evaluation of reverberation time in terms of speech intelligibility, design modifications, detailed solution.
4. Room acoustics measurement methodology.
5. Room simulations in software ODEON.
6. Sound insulating properties of building constructions - principle of sound wave propagation, requirements for sound insulation.
7. Measurement methodology for sound insulation properties of building constructions and elements.
8. Design methods and evaluation of building constructions in terms of sound insulation. Single and multi-layer constructions, internal and external building constructions.
9. Materials and components for air-borne and impact sound insulation in vertical and horizontal constructions, detail solution.
10. Urban sound field, the noise sources in the outdoors, CZ Government Regulation No. 272/2011, about health protection against harmful effects of noise and vibration.
11. Methodology for evaluation of noise from traffic, simulation model, measurement methodology.
12. The evaluation methodology of stationary noise sources, calculation procedure.
13. Noise reduction requirements and solutions, urban and room acoustics levels, detail solutions.
Exercise
Teacher / Lecturer
Syllabus
2. Design of classroom modifications on the basis of the acoustic measurements, optimization of sound absorptive materials and their application in the room, detail solutions.
3. Assessment of the reverberation time - calculation method of reverberation time in terms of speech intelligibility.
4. Laboratory measurement of sound absorption coefficient of selected porous sound absorptive materials, datasheet from measurements.
5. – 6. Simulation of the classroom model and its verification, software ODEON.
7. Measurements of airborne and impact sound insulation of a floor structure in situ.
8. Evaluation and verification of the measured construction.
9. Design of noise protections and modifications, detail solutions.
10. Optimal design of building constructions in terms of sound insulation - calculation procedures for the newly design building project documentation.
11. Measurement of noise from traffic, noise report.
12. – 13. Noise report according to applicable methodologies.