Indirect measurement of acoustic power into a small room at low frequencies

[Display omitted] ► The ‘peak envelope method’ is the power radiated measurement into the receiver room. ► The method employs two microphones and a calibrated volume velocity source. ► No reverberation time measurements are required. ► Good agreements in numerical and experimental validations were f...

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Published inApplied acoustics Vol. 73; no. 3; pp. 248 - 255
Main Authors Duarte, Elisabeth de A.C., Moorhouse, Andy, Viveiros, Elvira B.
Format Journal Article
LanguageEnglish
Published Kidlington Elsevier Ltd 01.03.2012
Elsevier
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Online AccessGet full text
ISSN0003-682X
1872-910X
1872-910X
DOI10.1016/j.apacoust.2011.09.007

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Abstract [Display omitted] ► The ‘peak envelope method’ is the power radiated measurement into the receiver room. ► The method employs two microphones and a calibrated volume velocity source. ► No reverberation time measurements are required. ► Good agreements in numerical and experimental validations were found. ► The method is apt for modal frequencies measurement where ISO 140 is badly adapted. An essential step towards improving sound insulation is a reliable means of quantifying the performance. However, for various reasons sound insulation measurements at low frequencies are associated with relatively high uncertainty and wide variance values. The objective of this research is to develop a method of sound insulation measurement which complements the standard ISO 140 measurement methods by providing improved accuracy at low frequencies. In this paper part of the problem is considered, namely the measurement of power radiated into the receiver room. The ‘peak envelope method’ is based on mode theory and the measurement employs a pair of microphones in the receiver room and a calibrated volume velocity source. No reverberation time measurements are required. The theory is outlined and computer simulations and trial measurements are carried out in order to validate the theory. Good agreement in numerical and experimental validation is demonstrated. We conclude that the peak envelope method is suitable for the measurement of radiated sound power at modal frequencies where ISO 140 methods are poorly adapted. In order to obtain transmission loss, a measure of incident power in the source room will also be required, which will be the subject of future works.
AbstractList [Display omitted] ► The ‘peak envelope method’ is the power radiated measurement into the receiver room. ► The method employs two microphones and a calibrated volume velocity source. ► No reverberation time measurements are required. ► Good agreements in numerical and experimental validations were found. ► The method is apt for modal frequencies measurement where ISO 140 is badly adapted. An essential step towards improving sound insulation is a reliable means of quantifying the performance. However, for various reasons sound insulation measurements at low frequencies are associated with relatively high uncertainty and wide variance values. The objective of this research is to develop a method of sound insulation measurement which complements the standard ISO 140 measurement methods by providing improved accuracy at low frequencies. In this paper part of the problem is considered, namely the measurement of power radiated into the receiver room. The ‘peak envelope method’ is based on mode theory and the measurement employs a pair of microphones in the receiver room and a calibrated volume velocity source. No reverberation time measurements are required. The theory is outlined and computer simulations and trial measurements are carried out in order to validate the theory. Good agreement in numerical and experimental validation is demonstrated. We conclude that the peak envelope method is suitable for the measurement of radiated sound power at modal frequencies where ISO 140 methods are poorly adapted. In order to obtain transmission loss, a measure of incident power in the source room will also be required, which will be the subject of future works.
Author Moorhouse, Andy
Viveiros, Elvira B.
Duarte, Elisabeth de A.C.
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Cites_doi 10.1016/S0022-460X(86)80027-X
10.1016/S0003-682X(03)00116-6
10.1121/1.414863
10.1121/1.1738452
10.1080/10803548.2007.11076715
10.1016/j.jsv.2003.09.061
10.1016/j.apacoust.2005.04.005
10.1016/S0003-682X(97)00026-1
10.1136/oem.57.9.627
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Issue 3
Keywords Low frequency
Sound power
Sound insulation measurement
Validation
Sound power level
Sound insulation
Acoustic measurement
Measurement result
Theoretical study
Experimentation
Numerical simulation
Room
Language English
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Snippet [Display omitted] ► The ‘peak envelope method’ is the power radiated measurement into the receiver room. ► The method employs two microphones and a calibrated...
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StartPage 248
SubjectTerms Acoustical measurements and instrumentation
Acoustics
Applied sciences
Building insulation
Buildings
Buildings. Public works
Computation methods. Tables. Charts
Exact sciences and technology
External envelopes
Fundamental areas of phenomenology (including applications)
Low frequency
Physics
Sound insulation measurement
Sound power
Structural analysis. Stresses
Thermal insulation
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Title Indirect measurement of acoustic power into a small room at low frequencies
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