Analyzing multiple acoustic diffraction over a wide barrier using equivalent knife-edge geometries and Babinet's principle (L)

Author:

Pardo-Quiles Domingo1,Rodríguez-Rodríguez Ignacio2,Rodríguez José-Víctor1ORCID,Campo-Valera María1,Juan-Llácer Leandro1

Affiliation:

1. Departamento de Tecnologías de la Información y las Comunicaciones, Universidad Politécnica de Cartagena 1 , Antiguo Cuartel de Antigones, Plaza del Hospital, 1, 30202 Cartagena, Murcia, Spain

2. Departamento de Ingeniería de Comunicaciones, Universidad de Málaga 2 , Avenida Cervantes, 2, 29071 Málaga, Spain

Abstract

We present a new method for the calculation of the multiple acoustic diffraction caused by the presence of a wide barrier. Our solution decomposes the initial scenario into an equivalent sum of geometries that only consider knife-edges. Then, by applying Babinet's principle, the total acoustic field that reaches the receiving point, which can be located at an arbitrary position, can be calculated via the uniform theory of diffraction. This method is mathematically less complex and computationally more efficient than most existing techniques. The results are validated (with and without ground reflection) by the solid agreement obtained with other solutions that solve the problem by considering the wide barrier as such, with our proposed method yielding a lower computational time (except against semi-empirical formulations) and better accuracy when compared with measurements. The presented solution can be applied in urban environments where the impact of traffic noise on residential buildings located along roads or highways needs to be evaluated, as well as in scenarios in which the insertion loss caused by a rectangular obstacle, such as a noise barrier, is to be calculated.

Publisher

Acoustical Society of America (ASA)

Subject

Acoustics and Ultrasonics,Arts and Humanities (miscellaneous)

Reference14 articles.

1. Attenuation of a spherical sound wave diffracted by a thick plate;Acustica,1973

2. Diffraction of sound around corners and over wide barriers;J. Acoust. Soc. Am.,1974

3. Geometrical theory of diffraction;J. Opt. Soc. Am.,1962

4. Sound diffraction by a many-sided barrier or pillar;J. Sound Vib.,1981

5. Sound diffraction by multiple wedges and thin screens;Appl. Acoust.,2005

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