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Numerical Comparison of Active Acoustic and Structural Noise Control in a Stiffened Double Wall Cylinder

机译:加筋双壁圆柱中主动声和结构噪声控制的数值比较

摘要

The active acoustic and structural noise control characteristics of a double wall cylinder with and without ring stiffeners were numerically evaluated. An exterior monopole was assumed to acoustically excite the outside of the double wall cylinder at an acoustic cavity resonance frequency. Structural modal vibration properties of the inner and outer shells were analyzed by post-processing the results from a finite element analysis. A boundary element approach was used to calculate the acoustic cavity response and the coupled structural-acoustic interaction. In the frequency region of interest, below 500 Hz, all structural resonant modes were found to be acoustically slow and the nonresonant modal response to be dominant. Active sound transmission control was achieved by control forces applied to the inner or outer shell, or acoustic control monopoles placed just outside the inner or outer shell. A least mean square technique was used to minimize the interior sound pressures at the nodes of a data recovery mesh. Results showed that single acoustic control monopoles placed just outside the inner or outer shells resulted in better sound transmission control than six distributed point forces applied to either one of the shells. Adding stiffeners to the double wall structure constrained the modal vibrations of the shells, making the double wall stiffer with associated higher modal frequencies. Active noise control obtained for the stiffened double wall configurations was less than for the unstiffened cylinder. In all cases, the acoustic control monopoles controlled the sound transmission into the interior better than the structural control forces.
机译:对带有和不带有环形加劲肋的双壁圆筒的主动声和结构噪声控制特性进行了数值评估。假设外部单极子以声腔共振频率在声学上激发双壁圆柱体的外部。通过对有限元分析结果进行后处理,分析了内壳和外壳的结构模态振动特性。使用边界元方法来计算声腔响应和结构-声相互作用。在感兴趣的频率区域(低于500 Hz)中,发现所有结构共振模态在声学上都很慢,而非共振模态响应则占主导。主动的声音传输控制是通过施加到内壳或外壳上的控制力或恰好位于内壳或外壳外的声学控制单极子来实现的。最小均方技术用于最小化数据恢复网格的节点处的内部声压。结果表明,放置在内壳或外壳外部的单个声学控制单极子比施加在任一壳上的六个分布点力产生更好的声音传输控制。在双壁结构中添加加劲肋可限制壳体的模态振动,从而使双壁变得更硬,并具有更高的模态频率。对于加劲的双壁构造,获得的主动噪声控制小于未加劲的圆柱体。在所有情况下,声学控制单极扬声器都比结构控制力更好地控制了声音向室内的传播。

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    Grosveld Ferdinand W.;

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  • 年度 1996
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