The paper describes a methodology for computing the sound transmission loss of any flat, curved and cylindrical, homogeneous and periodic structure, under any type of acoustic and/or aerodynamic load. An approximate excitation model is introduced to reproduce uncorrelated and spatially-correlated loads using a wavenumber integration of surface waves. Then, a wave finite element formulation is developed and interfaced with the excitation models in order to cover industrially-relevant case studies. Analytical, numerical and experimental transmission losses are presented for validation purposes. Finite size effects are also taken into account using a spatial windowing and a cylindrical analogy, for curved structures. Different periodic-cell designs are also compared and investigated under turbulent boundary layer and diffuse acoustic field excitations.

Schemes for the sound transmission of flat, curved and axisymmetric structures excited by aerodynamic and acoustic sources / Errico, Fabrizio; Ichchou, Mohamed; Franco, Francesco; DE ROSA, Sergio; Bareille, Olivier; Droz, Christophe. - In: JOURNAL OF SOUND AND VIBRATION. - ISSN 0022-460X. - 456:(2019), pp. 221-238. [10.1016/j.jsv.2019.05.041]

Schemes for the sound transmission of flat, curved and axisymmetric structures excited by aerodynamic and acoustic sources

Franco Francesco;De Rosa Sergio;
2019

Abstract

The paper describes a methodology for computing the sound transmission loss of any flat, curved and cylindrical, homogeneous and periodic structure, under any type of acoustic and/or aerodynamic load. An approximate excitation model is introduced to reproduce uncorrelated and spatially-correlated loads using a wavenumber integration of surface waves. Then, a wave finite element formulation is developed and interfaced with the excitation models in order to cover industrially-relevant case studies. Analytical, numerical and experimental transmission losses are presented for validation purposes. Finite size effects are also taken into account using a spatial windowing and a cylindrical analogy, for curved structures. Different periodic-cell designs are also compared and investigated under turbulent boundary layer and diffuse acoustic field excitations.
2019
Schemes for the sound transmission of flat, curved and axisymmetric structures excited by aerodynamic and acoustic sources / Errico, Fabrizio; Ichchou, Mohamed; Franco, Francesco; DE ROSA, Sergio; Bareille, Olivier; Droz, Christophe. - In: JOURNAL OF SOUND AND VIBRATION. - ISSN 0022-460X. - 456:(2019), pp. 221-238. [10.1016/j.jsv.2019.05.041]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/753228
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