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Measurement of the Sound Reduction Index as a Function of the Incidence Angle by two Different Methods

机译:通过两种不同的方法测量消声指数与入射角的关系

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摘要

Generally sound reduction index R is measured for an incident diffuse field, and does not take into account the angular dependency. However, the variation of reduction index with direction of incoming wave can be significant, and it may be necessary to consider the angular influence in acoustical transmission problems, especially when considering directional noise sources. This paper presents two experimental methods, developed to measure the sound reduction index as a function of the incidence angle. Two set-ups, implemented in standard acoustical transmission laboratories, have been tested. In the first system, the vibrating wall is excited by a sound source which simulates a plane wave, with a given incidence angle. This incident field is generated by an acoustical horn. The reduction index R(θ) is obtained sequentially, for different angular positions of the source, from both the measurement of the outside wall pressure level and the transmitted pressure level. In the second system, the studied structure is excited by a diffuse field, and a wave by wave decomposition of the radiated intensity yields the reduction index as a function of the angle of incidence. The decomposition of the radiated intensity is based on the use of an acoustical holography technique, NAH-Phonoscopy. The mathematical formulation of the two methods is detailed. Experimental results are presented and compared to theoretical data. Then, the advantages and limits of each system are discussed.
机译:通常,降噪指数R是针对入射扩散场测量的,并且没有考虑角度依赖性。但是,衰减指数随入射波方向的变化可能很大,并且可能有必要考虑声学传输问题中的角度影响,尤其是在考虑方向性噪声源时。本文介绍了两种实验方法,旨在测量降噪指数与入射角的关系。已测试了在标准声学传输实验室中执行的两个设置。在第一个系统中,振动壁由声源激发,该声源模拟具有给定入射角的平面波。该入射场是由声学喇叭产生的。从源的不同角度位置,从外壁压力水平和传递压力水平的测量中依次获得减小指数R(θ)。在第二个系统中,所研究的结构被散射场激发,辐射强度的逐波分解产生的衰减指数是入射角的函数。辐射强度的分解是基于使用声全息技术(NAH-透视)的。详细介绍了这两种方法的数学公式。实验结果被提出并与理论数据进行比较。然后,讨论了每个系统的优点和局限性。

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