Title of article
Experimental and numerical study on the propagation of impulsive sound around buildings
Author/Authors
Marcel C. Remillieux، نويسنده , , Joseph M. Corcoran، نويسنده , , T. Ryan Haac، نويسنده , , Ricardo A. Burdisso، نويسنده , , U. Peter Svensson، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
16
From page
1029
To page
1044
Abstract
Propagation of impulsive sound around buildings and induced structural loading are investigated experimentally and numerically. Experiments were conducted on a rectangular building at Virginia Tech using sonic booms generated by shaped charges with an explosive weight of 0.78 kg, constructed from detonation cord. These experiments were simulated with a three-dimensional numerical model, in the context of geometrical acoustics (GA), by combining the image source method for the reflected field (specular reflections) with an extension of the Biot–Tolstoy–Medwin (BTM) method for the diffracted field. In this model, it is assumed that the acoustic propagation is linear and that all surfaces are acoustically rigid. This numerical model is validated against a boundary element (BE) solution and experimental data, showing a good overall agreement. The key advantages of this GA modeling approach for this application include the ability to model large three-dimensional domains over a wide frequency range and also to decompose the sound field into direct, reflected, and diffracted components, thus providing a better understanding of the sound-propagation mechanisms. Finally, this validated numerical model is used to investigate sound propagation around a cluster of six rectangular buildings, for a range of elevated source positions simulating sonic booms from aircraft.
Keywords
Biot–Tolstoy–Medwin method , Outdoor sound propagation , Isolated buildings , Sonic boom , Geometrical acoustics , Boundary element method , Multiple buildings , Impulsive sound
Journal title
Applied Acoustics
Serial Year
2012
Journal title
Applied Acoustics
Record number
1171688
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