On the Radiation from Unbaffled Pistons and Their Dipole Equivalent

54º Congreso Español de Acústica — Tecniacústica 2023

Paper Language
EN · English
Date / Time
Author
Filipe SoaresInstituto Superior Técnico, Centro de Ciências e Tecnologias Nucleares, Lisboa, Portugal
Author 2
Vincent DebutInstituto de Etnomusicologia, Centro de Estudos em Música e Dança, Universidade Nova de Lisboa, Portugal / Instituto Politécnico de Castelo Branco, Escola Superior de Artes Aplicadas, Portugal
Pags
376-381
Session
AMS-0 Acústica musical
Subsession

Abstract

The radiation efficiency from simple vibrating planar surfaces is often used as a basis to describe the sound radiation from more complex structures, having important applications in various fields of acoustics. The low-frequency radiative behavior of a baffled piston can easily be represented by a simple monopole source. Notably, the equivalent source strength is dependent on the piston surface area. However, the unbaffled case presents additional difficulties as the “edge effects” significantly alter the piston radiation impedance. Consequently, a low-frequency equivalence between dipoles and an unbaffled pistons is not as straight forward, since not only the piston area but also its shape will have an effect on the radiated sound. In this work, the search for a simple (and relatively generic) equivalence between dipoles and unbaffled pistons is pursued. A finite element model is used to calculate the radiation efficiency from unbaffled pistons of different shapes. Results indicate that the “edge effects” can be accurately represented by a simple term dependent on the piston compactness (ratio of area to perimeter). Effectively, pistons with smaller area to perimeter ratio will be less efficient radiators. Such term allows the definition of an equivalent dipole source strength that approximates the low-frequency behavior of an unbaffled piston of arbitrary shape.

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