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首页> 外文期刊>Advances in Acoustics and Vibration >A Mathematical Images Group Model to Estimate the Sound Level in a Close-Fitting Enclosure
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A Mathematical Images Group Model to Estimate the Sound Level in a Close-Fitting Enclosure

机译:数学图像组模型,用于估计封闭式音箱中的声级

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This paper describes a special mathematical images model to determine the sound level inside a close-fitting sound enclosure. Such an enclosure is defined as the internal air volume defined by a machine vibration noise source at one wall and a parallel reflecting wall located very close to it and acts as the outside radiating wall of the enclosure. Four smaller surfaces define a parallelepiped for the volume. The main reverberation group is between the two large parallel planes. Viewed as a discrete line-type source, the main group is extended as additional discrete line-type source image groups due to reflections from the four smaller surfaces. The images group approach provides a convergent solution for the case where hard reflective surfaces are modeled with absorption coefficients equal to zero. Numerical examples are used to calculate the sound pressure level incident on the outside wall and the effect of adding high absorption to the front wall. This is compared to the result from the general large room diffuse reverberant field enclosure formula for several hard wall absorption coefficients and distances between machine and front wall. The images group method is shown to have low sensitivity to hard wall absorption coefficient value and presents a method where zero sound absorption for hard surfaces can be used rather than an initial hard surface sound absorption estimate or measurement to predict the internal sound levels the effect of adding absorption.
机译:本文介绍了一种特殊的数学图像模型,用于确定紧密贴合的隔音罩内的声音水平。这样的外壳被定义为由一处机器振动噪声源和位于其附近的平行反射壁所限定的内部空气量,该平行反射壁用作外壳的外部辐射壁。四个较小的表面为该体积定义了平行六面体。主要混响组在两个大的平行平面之间。从离散的线型源观察,由于来自四个较小表面的反射,主组扩展为其他离散的线型源图像组。对于使用反射系数等于零的硬反射表面建模的情况,图像组方法提供了收敛的解决方案。数值示例用于计算入射到外壁的声压级以及对前壁增加高吸收的效果。将该结果与一般的大房间扩散混响场封闭公式的结果进行比较,得出了几个硬壁吸收系数以及机器与前壁之间的距离。图像组方法显示出对硬壁吸声系数值的敏感性较低,并提出了一种方法,其中可以使用硬表面的零吸声,而不是最初的硬表面吸声估计或测量来预测内部声级的影响。增加吸收。

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