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Sound radiation from perforated plates

机译:穿孔板发出的声辐射

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摘要

A practical engineering noise control measure that can often be used for plate-like structures is to construct them from perforates. This can dramatically reduce the sound radiation from such structures. Here, a prediction model is developed to quantify this effect. It is an extension of Laulagnet's model for the radiation from an unbaffled plate, which expresses the surface pressure difference as well as the plate velocity as a sum over plate modes. The perforation is included in terms of a continuously distributed surface impedance, which for moderately sized holes is predominantly inertial. Results show that the radiation efficiency reduces, not only as the perforation ratio increases but also as the hole size reduces for a given perforation ratio. Experimental validation is given which shows a good agreement with the predictions. An approximate formula is also proposed for the effect of perforation which corresponds well with the analytical calculations up to half the critical frequency and could be used for an engineering application to predict the noise reduction due to perforation. A model for the case of a perforated plate embedded in an equally perforated baffle is also discussed for comparison.
机译:经常用于板状结构的一种实用的工程噪声控制措施是从孔眼构造它们。这可以大大减少来自此类结构的声音辐射。在这里,开发了一个预测模型来量化这种影响。它是Laulagnet模型对未折流板的辐射的扩展,它表示表面压力差以及板速作为板模的总和。穿孔包括连续分布的表面阻抗,对于中等大小的孔,该阻抗主要是惯性的。结果表明,对于给定的穿孔率,辐射效率不仅随着穿孔率的增加而降低,而且随着孔径的减小而降低。给出的实验验证与预测结果吻合良好。还针对穿孔的影响提出了一个近似公式,该公式与高达临界频率一半的解析计算非常吻合,可用于工程应用中,以预测由于穿孔而导致的噪声降低。为了进行比较,还讨论了在相同穿孔的挡板中嵌入穿孔板的情况的模型。

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