Circuit Theory Analysis of Acoustically Coupled Rooms

Autores

  • Federico Miyara Universidad Nacional de Rosario

DOI:

https://doi.org/10.37537/rev.elektron.3.1.62.2019

Palavras-chave:

coupled rooms, circuit model, analogies

Resumo

A circuit theory approach is presented for the analysis of acoustically coupled spaces. It is based on energy flow and balance with a similar analogy to the one used for solving dynamic thermal systems, where acoustic power is analog  to electric current and acoustic energy density is analog to voltage. Room volume is equivalent to capacitor and sound  absorption is equivalent to a resistor. From these analogies and Laplace-transformed models it is possible to get stationary or transient response solutions.

Downloads

Os dados de download ainda não estão disponíveis.

Biografia do Autor

  • Federico Miyara, Universidad Nacional de Rosario
    Ingeniero Electrónico egreasado de la Universidad Nacional de Rosario (UNR). Profesor asociado con dedicación exclusiva en la UNR. Director del laboratorio  de Acústica y Electroacústica de la facultad de Ingeniería  de la UNR. Autor de los libros Acústica y sistemas de sonido, Ruido, arte y sociedad, Control  de ruido, Mediciones acústicas basadas en software.

Referências

Tutte, W.T. Graph Theory . Cambridge University Press, 2001.

Borutzky, Wolfgang (Editor), Bond Graph Modelling of Engineering Systems. Theory, Applications and Software Support . Springer, 2011.

Beranek, Leo. Acoustics . ASA, 1986.

Bergman, Theodore L.; Lavine, Adrienne S.; Incropera, Frank P.; Dewitt, David P. Fundamentals of Heat and Mass Transfer, 7th Ed., John Wiley & Sons Inc., 2011.

Cremer, Lothar; Müller, HA. Principles and Applications of Room Acoustics. Applied Science, London, 1982.

Kuttruff, Heinrich. Room acoustics (5th edition) . Spon Press, 2009.

Publicado

2019-06-15

Edição

Seção

Acústica, Áudio e Ultrassom

Como Citar

[1]
F. Miyara, “Circuit Theory Analysis of Acoustically Coupled Rooms”, Elektron, vol. 3, nº 1, p. 1–5, jun. 2019, doi: 10.37537/rev.elektron.3.1.62.2019.