229-0115/03 – Acoustics and Daylighting (AaDO)

Gurantor departmentDepartment of Building Environment and Building ServicesCredits4
Subject guarantordoc. Ing. Iveta Skotnicová, Ph.D.Subject version guarantordoc. Ing. Iveta Skotnicová, Ph.D.
Study levelundergraduate or graduate
Study languageEnglish
Year of introduction2009/2010Year of cancellation2020/2021
Intended for the facultiesFASTIntended for study typesBachelor
Instruction secured by
LoginNameTuitorTeacher giving lectures
SKO80 doc. Ing. Iveta Skotnicová, Ph.D.
Extent of instruction for forms of study
Form of studyWay of compl.Extent
Full-time Credit and Examination 2+2
Part-time Examination 14+0

Subject aims expressed by acquired skills and competences

Knowledge: basic acoustic quantities, sound propagation, standard requirements. Evaluation of daylighting and insolation in buildings. Application: Calculation and evaluation of acoustic properties of structures. Calculation and evaluation of daylighting and insolation by graphic methods.

Teaching methods

Lectures
Tutorials

Summary

Acoustic waves, sound field. Outdoor acoustics. Indoor acoustics, diffuse sound field, sound transmission between rooms, Air-borne sound insulation, structure-born sound insulation. Daylighting in buildings. Daylight factor D. Quality of daylighting, requirements. Insolation and requirements for insolation.

Compulsory literature:

CHADERTON, D. Building Services Engineering. Son Přes New York, 2004. ISBN: 0-203-56343-3 CEN EN 12354-1 Building Acoustics - Estimation of Acoustic Performance of Buildings from the Performance of Elements - Part 1: Airborne Sound Insulation between Rooms BS EN 12354-2:2000 Building acoustics. Estimation of acoustic performance in buildings from the performance of elements. Impact sound insulation between room CEN EN 12665 Light and Lighting - Basic Terms and Criteria for Specifying Lighting Requirements BSI BS EN 12464-1 Light and lighting — Lighting of work places — Part 1: Indoor work places

Recommended literature:

Recommended literature: Ficker T. Handbook of Building Thermal technology, Acoustics and Daylighting. CERM Brno 2004. ISBN 80-214-2670-5

Way of continuous check of knowledge in the course of semester

Each student graduate during the semester control test of building acoustics.

E-learning

The course has not prepared educational materials in the form of e-learning.

Other requirements

At least 70% attendance at the exercises. Absence, up to a maximum of 30%, must be excused and the apology must be accepted by the teacher (the teacher decides to recognize the reason for the excuse). Tasks assigned on the exercises must be hand in within the dates set by the teacher.

Prerequisities

Subject has no prerequisities.

Co-requisities

Subject has no co-requisities.

Subject syllabus:

1. Acoustic waves. Sound field. Acoustic quantities. 2. Physiological acoustics. Acoustic effect on human. Assessment of noise. Hygienic limits. 3. Urban acoustics. Attenuations of noise. Traffic noise. Acoustic treatments. 4. Indoor acoustics. Diffuse sound field. Absorbtive structures. 5. Air-born sound insulation. Methods of calculation. Standard requirements. 6. Structure-born sound insulation. Methods of calculation. Standard requirements. 7. Example letting for student – acoustic assessment of building structures. 8. Measurement of sound. 9. Acoustical engineering. Quality of listening. Time of reverberation. 10. Daylighting. Insolation. Requirements for insolation. Graphic methods. 11. Photometry. 12. Daylighting in buildings. Calculation of indoor illuminance. Quantitative requirements. Qualitative requirements.

Conditions for subject completion

Conditions for completion are defined only for particular subject version and form of study

Occurrence in study plans

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Occurrence in special blocks

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Assessment of instruction

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