Marchetto Christophe, Maxit Laurent, Robin Olivier, Berry Alain
Université Lyon, INSA-Lyon, Laboratoire Vibrations Acoustique, F-69621 Villeurbanne, France.
Groupe d'Acoustique de l'Université de Sherbrooke, Université de Sherbrooke, Sherbrooke, J1K 2R1, Canada.
J Acoust Soc Am. 2017 Jun;141(6):4508. doi: 10.1121/1.4985126.
This paper aims at developing an experimental method to characterize the vibroacoustic response of a panel to a diffuse acoustic field (DAF) excitation with a different laboratory setup than those used in standards (i.e., coupled rooms). The proposed methodology is based on a theoretical model of the DAF and on the measurement of the panel's sensitivity functions, which characterize its vibroacoustic response to wall plane waves. These functions can be estimated experimentally using variations of the reciprocity principle, which are described in the present paper. These principles can either be applied for characterizing the structural response by exciting the panel with a normal force at the point of interest or for characterizing the acoustic response (radiated pressure, acoustic intensity) by exciting the panel with a monopole and a dipole source. For both applications, the validity of the proposed approach is numerically and experimentally verified on a test case composed of a baffled simply supported plate. An implementation for estimating the sound transmission loss of the plate is finally proposed. The results are discussed and compared with measurements performed in a coupled anechoic-reverberant room facility following standards.
本文旨在开发一种实验方法,以表征面板在不同于标准中所使用的实验室设置(即耦合房间)下对扩散声场(DAF)激励的振动声学响应。所提出的方法基于DAF的理论模型以及面板灵敏度函数的测量,这些函数表征了其对壁面平面波的振动声学响应。这些函数可以通过互易原理的变体进行实验估计,本文对此进行了描述。这些原理既可以用于通过在感兴趣的点处以法向力激励面板来表征结构响应,也可以用于通过以单极子和偶极子源激励面板来表征声学响应(辐射压力、声强)。对于这两种应用,所提出方法的有效性在一个由带障板的简支板组成的测试案例上进行了数值和实验验证。最后提出了一种估计该板传声损失的实现方法。对结果进行了讨论,并与按照标准在耦合消声-混响室设施中进行的测量结果进行了比较。