RADIATION EFFICIENCY OF A PERFORATED PANEL MODELLED USING ELEMENTARY SOURCE TECHNIQUE
A perforate is often used in practical engineering noise control to reduce sound radiation from a vibrating structure. This paper presents a prediction model to quantify this effect using elementary sources which can take account of the hole size and distribution across the plate surface. The mod...
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International Institute of Acoustics and Vibration
2013
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my.utem.eprints.88812015-05-28T03:59:55Z http://eprints.utem.edu.my/id/eprint/8881/ RADIATION EFFICIENCY OF A PERFORATED PANEL MODELLED USING ELEMENTARY SOURCE TECHNIQUE Putra, Azma Muhammad, Noryani Shyafina, Nurain Thompson, David J. TJ Mechanical engineering and machinery A perforate is often used in practical engineering noise control to reduce sound radiation from a vibrating structure. This paper presents a prediction model to quantify this effect using elementary sources which can take account of the hole size and distribution across the plate surface. The model is based on discretization of the Rayleigh formula where a plate set in an infinite rigid baffle is divided into array of elementary source. A matrix of acoustic impedance as a function of acoustic pressure due to motion of the corresponding elementary source and other surrounding sources is assembled. The total sound power is determined from the summation over the power contributions from all elementary sources. The results show that the radiation efficiency reduces as the perforation ratio is increased or the hole size is reduced. International Institute of Acoustics and Vibration 2013-07 Article PeerReviewed application/pdf en http://eprints.utem.edu.my/id/eprint/8881/1/ICSV20_PerforatedPanel_Putra.pdf Putra, Azma and Muhammad, Noryani and Shyafina, Nurain and Thompson, David J. (2013) RADIATION EFFICIENCY OF A PERFORATED PANEL MODELLED USING ELEMENTARY SOURCE TECHNIQUE. Proceedings of the 20th International Congress on Sound & Vibration. pp. 1-8. ISSN 2329-3675 http://www.icsv20.org/ |
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TJ Mechanical engineering and machinery Putra, Azma Muhammad, Noryani Shyafina, Nurain Thompson, David J. RADIATION EFFICIENCY OF A PERFORATED PANEL MODELLED USING ELEMENTARY SOURCE TECHNIQUE |
description |
A perforate is often used in practical engineering noise control to reduce sound radiation from
a vibrating structure. This paper presents a prediction model to quantify this effect using elementary
sources which can take account of the hole size and distribution across the plate
surface. The model is based on discretization of the Rayleigh formula where a plate set in an
infinite rigid baffle is divided into array of elementary source. A matrix of acoustic impedance
as a function of acoustic pressure due to motion of the corresponding elementary source and
other surrounding sources is assembled. The total sound power is determined from the summation
over the power contributions from all elementary sources. The results show that the
radiation efficiency reduces as the perforation ratio is increased or the hole size is reduced. |
format |
Article |
author |
Putra, Azma Muhammad, Noryani Shyafina, Nurain Thompson, David J. |
author_facet |
Putra, Azma Muhammad, Noryani Shyafina, Nurain Thompson, David J. |
author_sort |
Putra, Azma |
title |
RADIATION EFFICIENCY OF A PERFORATED PANEL
MODELLED USING ELEMENTARY SOURCE
TECHNIQUE |
title_short |
RADIATION EFFICIENCY OF A PERFORATED PANEL
MODELLED USING ELEMENTARY SOURCE
TECHNIQUE |
title_full |
RADIATION EFFICIENCY OF A PERFORATED PANEL
MODELLED USING ELEMENTARY SOURCE
TECHNIQUE |
title_fullStr |
RADIATION EFFICIENCY OF A PERFORATED PANEL
MODELLED USING ELEMENTARY SOURCE
TECHNIQUE |
title_full_unstemmed |
RADIATION EFFICIENCY OF A PERFORATED PANEL
MODELLED USING ELEMENTARY SOURCE
TECHNIQUE |
title_sort |
radiation efficiency of a perforated panel
modelled using elementary source
technique |
publisher |
International Institute of Acoustics and Vibration |
publishDate |
2013 |
url |
http://eprints.utem.edu.my/id/eprint/8881/1/ICSV20_PerforatedPanel_Putra.pdf http://eprints.utem.edu.my/id/eprint/8881/ http://www.icsv20.org/ |
_version_ |
1665905376168509440 |
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13.211869 |