Estimation of sound absorption coefficient at modal frequencies using decay time measurements and eigenvalue model in a small room

Author:

Čurović Luka1ORCID,Murovec Jure1,Železnik Anže1,Prezelj Jurij1

Affiliation:

1. Faculty of Mechanical Engineering, University of Ljubljana, Ljubljana, Slovenia

Abstract

Measuring the sound absorption coefficient in a small reverberation room below the Schroeder frequency is a challenging task and the results are subject to a high degree of uncertainty. Recent research shows that the low-frequency acoustic properties of the enclosure and the test sample should be characterized by quantities that describe the modal sound field. The aim of this paper is to present a method for estimating the absorption coefficient of a test sample at modal frequencies in the low frequency range and to demonstrate its applicability in a small room. The hybrid inverse approach is based on eigenvalue measurement data coupled with a finite element model to estimate the sound-absorbing properties of a small room and the test sample. The method was tested experimentally and the results were consistent with those of the long impedance tube method. The applicability of the proposed method was further demonstrated by the in-situ characterization of different acoustic samples in the low frequency range.

Funder

Slovenian Research Agency

Publisher

SAGE Publications

Reference58 articles.

1. ISO 354:2003. Acoustics - measurement of sound absorption in a reverberation room. Standard, International Organization for Standardization, Geneva, CH, 2003.

2. ASTM, C423-17. Standard test method for sound absorption and sound absorption coefficients by the reverberation room method. Standard, American Society for Testing and Materials, West Conshohocken, PA, 2017.

3. Prediction of random incidence sound absorption coefficients of porous materials

4. Towards a sustainable approach for sound absorption assessment of building materials: Validation of small-scale reverberation room measurements

5. SAE j2883:2015. Laboratory measurement of random incidence sound absorption tests using a small reverberation room. Standard, SAE International, 2015.

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