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Noise Control Capability of Structurally Integrated Resonator Arrays in a Foam-Treated Cylinder

机译:在泡沫处理圆柱中结构集成谐振器阵列的噪声控制能力

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Corrugated-core sandwich structures with integrated acoustic resonator arrays have been of recent interest for launch vehicle noise control applications. Previous tests and analyses have demonstrated the ability of this concept to increase sound absorption and reduce sound transmission at low frequencies. However, commercial aircraft manufacturers often require fibrous or foam blanket treatments for broadband noise control and thermal insulation. Consequently, it is of interest to further explore the noise control benefit and trade-offs of structurally integrated resonators when combined with various degrees of blanket noise treatment in an aircraft-representative cylindrical fuselage system. In this study, numerical models were developed to predict the effect of broadband and multi-tone structurally integrated resonator arrays on the interior noise level of cylindrical vibroacoustic systems. Foam layers with a range of thicknesses were applied near the inside surface of the cylinder to represent different degrees of conventional blanket treatments. Excitations including point force as well as harmonic and random fluctuating pressure fields were considered. The results suggest that structurally integrated resonators can be tuned to address a variety of noise control requirements and effectively used in conjunction with foam blanket noise treatments, but their relative benefit is reduced when thicker foam treatments are used.
机译:具有集成声学谐振器阵列的波纹芯夹层结构近来是发动车辆噪声控制应用的兴趣。以前的测试和分析表明了该概念提高吸音和降低低频变速箱的能力。然而,商用飞机制造商通常需要纤维或泡沫毯处理,用于宽带噪声控制和隔热。因此,当与飞机代表圆柱形机身系统中的各种毯子噪声处理结合时,进一步探索结构上集成谐振器的噪声控制益处和权衡。在该研究中,开发了数值模型以预测宽带和多色结构集成谐振器阵列对圆柱形纵岩系统的内部噪声水平的影响。在气缸的内表面附近施加具有一系列厚度范围的泡沫层,以表示不同程度的传统覆盖物理。考虑了包括点力以及谐波和随机波动压力的激励。结果表明,可以调整结构集成的谐振器以解决各种噪声控制要求,并有效地与泡沫橡皮布噪声处理结合使用,但是当使用较厚的泡沫处理时,它们的相对益处减少。

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