Muestra métricas de impacto externas asociadas a la publicación. Para mayor detalle:
| Indexado |
|
||||
| DOI | 10.1016/J.APACOUST.2022.109089 | ||||
| Año | 2022 | ||||
| Tipo | artículo de investigación |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
Airflow resistivity is an essential parameter for characterizing air-saturated porous sound-absorbing materials theoretically and selecting sound-absorbing materials in practice. Although standardized methods can determine this non-acoustic parameter in the laboratory, many indirect alternative methods have been proposed to measure it. One of them is the technique presented in the 1980s by Ingard and Dear using a standing wave tube, a loudspeaker, and two microphones. This paper suggests an electroacoustic procedure based on a modification of the Ingard and Dear setup. Equations are derived through the transfer matrix method. After a simple calibration, the airflow resistivity of a material sample is indirectly estimated from the total electric impedance measured at the loudspeaker input connection terminals. Thus, implementing the proposed method is straightforward and inexpensive, since microphones and complex instrumentation are unnecessary. The method is tested by comparing measured values of the airflow resistivity of different material samples with those obtained through the Ingar and Dear approach and the ISO standardized method. Reasonably good agreement is observed, confirming the validity of the electroacoustic method.
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Rodriguez, Juan C. | Hombre |
Universitat Politècnica de València - España
Univ Politecn Valencia - España |
| 2 | Alba, Jesus | Hombre |
Universitat Politècnica de València - España
Univ Politecn Valencia - España |
| 3 | ARENAS-BERMUDEZ, JORGE PATRICIO | Hombre |
Universidad Austral de Chile - Chile
|
| 4 | del Rey, Romina | - |
Universidad Austral de Chile - Chile
Universitat Politècnica de València - España Univ Politecn Valencia - España |
| Fuente |
|---|
| European Social Fund |
| Conselleria de Innovación, Universidades, Ciencia y Sociedad Digital, Generalitat Valenciana |
| ACIF-2020 program |
| Conselleria de Innovacion, Universidades, Ciencia y Sociedad - Generalitat Valen-ciana |
| Agradecimiento |
|---|
| This work has been financially supported by the Conselleria de Innovacion, Universidades, Ciencia y Sociedad – Generalitat Valenciana, through the ACIF-2020 program [Grant No. ACIF/2020/401], and the European Social Fund. |
| This work has been financially supported by the Conselleria de Innovacion, Universidades, Ciencia y Sociedad - Generalitat Valen-ciana, through the ACIF-2020 program [Grant No. ACIF/2020/401] , and the European Social Fund. |