Applications of Parallel-Element, Embedded Mesh-Cap Acoustic Liner Concepts

Michael G. Jones, D. Nark, A. Baca, Clark R. Smith
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引用次数: 4

Abstract

This study explores progress achieved with 2DOF, 3DOF, and MDOF acoustic liners constructed with mesh caps embedded within a honeycomb core. These liner configurations offer potential for broadband noise reduction, and are suitable for conventional aircraft implementation. Samples for each configuration are tested in the NASA normal incidence tube and grazing flow impedance tube, with and without a wire mesh facesheet. Impedances based on these measured data compare favorably with those predicted using a transmission line impedance prediction model. Predicted impedances are then used as input for an aeroacoustic propagation code to compute axial acoustic pressure distributions in the grazing flow tube. These predicted distributions compare favorably with the corresponding measured distributions at frequencies away from the frequency of peak attenuation, but suffer slight degradation for frequencies very near the peak attenuation frequency, where the predicted results are sensitive to input impedance changes. As expected, the noise reduction frequency range increases as more degrees of freedom are included. Although the specific results achieved herein may differ from those that would be achieved with other 2DOF, 3DOF, and MDOF liners, this comparison highlights some of the key features that can be exploited in the design of parallel-element, embedded mesh-cap liners.
平行单元、嵌入式网格帽声学衬垫概念的应用
本研究探讨了在蜂窝芯内嵌入网格帽的2DOF、3DOF和mof声学衬垫的进展。这些内衬结构提供了宽带降噪的潜力,并且适用于传统飞机。每种配置的样品都在NASA正常入射管和掠流阻抗管中进行了测试,有和没有金属丝网面板。基于这些测量数据的阻抗与使用传输线阻抗预测模型预测的阻抗比较有利。然后将预测的阻抗作为气动声传播程序的输入,计算掠流管内的轴向声压分布。在远离峰值衰减频率的频率上,这些预测分布与相应的测量分布比较有利,但在非常接近峰值衰减频率的频率上,预测结果对输入阻抗变化很敏感。正如预期的那样,随着自由度的增加,降噪频率范围也随之增加。虽然本文所获得的具体结果可能与其他2DOF、3DOF和MDOF衬套不同,但这种比较突出了平行单元嵌入式网格帽衬套设计中可以利用的一些关键特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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