MEASUREMENT OF NEW ENERGETIC PARAMETERS FOR THE OBJECTIVE CHARACTERIZATION OF AN OPERA HOUSE
Identifieur interne : 002486 ( Main/Exploration ); précédent : 002485; suivant : 002487MEASUREMENT OF NEW ENERGETIC PARAMETERS FOR THE OBJECTIVE CHARACTERIZATION OF AN OPERA HOUSE
Auteurs : D. Stanzial [Italie] ; D. Bonsi [Italie] ; N. Prodi [Italie]Source :
- Journal of Sound and Vibration [ 0022-460X ] ; 1999.
Descripteurs français
- Pascal (Inist)
- Wicri :
- geographic : Italie.
English descriptors
- KwdEn :
Abstract
Following a rigorous approach to the energetic analysis of sound fields, the measurement of new quantities for the physical description of the behavior of sound in enclosed spaces has been carried out inside an Italian opera house. A first set of measures has been performed during the steady state, allowing the study of the new discovered property calledsound intensity polarization , which accounts for the amount of energy oscillating thorugh the measurement point. Then, in order to accomplish a complete statistical study of the transient field behaviour, the full set of quantities involved in the energy continuity equation (total sound energy density and intensity) has been obtained by means of the extension of the classical Schroeder's method to the quantities depending also on the air particle velocity solution of the wave equation. Finally, two newly defined field indicators, accounting for the local amount of sound energy radiation and the balance between the potential and kinetic parts of the total sound energy density, have been investigated.
Url:
DOI: 10.1006/jsvi.1999.2693
Affiliations:
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Le document en format XML
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<term>Continuity equation</term>
<term>Energy density</term>
<term>Energy equation</term>
<term>Experimental study</term>
<term>Italy</term>
<term>Measurement method</term>
<term>Opera(building)</term>
<term>Polarization</term>
<term>Pulse response</term>
<term>Sound intensity</term>
<term>Sound pressure</term>
<term>Statistical study</term>
<term>Transient response</term>
<term>Wave equation</term>
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<keywords scheme="Pascal" xml:lang="fr"><term>4355</term>
<term>Caractérisation</term>
<term>Densité énergie</term>
<term>Equation continuité</term>
<term>Equation onde</term>
<term>Equation énergie</term>
<term>Etude expérimentale</term>
<term>Etude statistique</term>
<term>Intensité son</term>
<term>Italie</term>
<term>Méthode Schroeder</term>
<term>Méthode mesure</term>
<term>Opéra bâtiment</term>
<term>Polarisation</term>
<term>Pression acoustique</term>
<term>Réponse impulsion</term>
<term>Réponse transitoire</term>
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<front><div type="abstract" xml:lang="en">Following a rigorous approach to the energetic analysis of sound fields, the measurement of new quantities for the physical description of the behavior of sound in enclosed spaces has been carried out inside an Italian opera house. A first set of measures has been performed during the steady state, allowing the study of the new discovered property calledsound intensity polarization , which accounts for the amount of energy oscillating thorugh the measurement point. Then, in order to accomplish a complete statistical study of the transient field behaviour, the full set of quantities involved in the energy continuity equation (total sound energy density and intensity) has been obtained by means of the extension of the classical Schroeder's method to the quantities depending also on the air particle velocity solution of the wave equation. Finally, two newly defined field indicators, accounting for the local amount of sound energy radiation and the balance between the potential and kinetic parts of the total sound energy density, have been investigated.</div>
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