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Application of cylindrical near-field acoustical holography to the visualization of aeroacoustic sources

机译:圆柱近场声全息技术在航空声源可视化中的应用

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The purpose of this study was to develop methods for visualizing the sound radiation from aeroacoustic sources in order to identify their source strength distribution, radiation patterns, and to quantify the performance of noise control solutions. Here, cylindrical Near-field Acoustical Holography was used for that purpose. In a practical holographic measurement of sources comprising either partially correlated or uncorrelated subsources, it is necessary to use a number of reference microphones so that the sound field on the hologram surface can be decomposed into mutually incoherent partial fields before holographic projection. In this article, procedures are described for determining the number of reference microphones required when visualizing partially correlated aeroacoustic sources; performing source nonstationarity compensation; and applying regularization. The procedures have been demonstrated by application to a ducted fan. Holographic tests were performed to visualize the sound radiation from that source in its original form. The system was then altered to investigate the effect of two modifications on the fan's sound radiation pattern: first, leaks were created in the fan and duct assembly, and second, sound absorbing material was used to line the downstream dust section. Results in all three cases are shown at the blade passing frequency and for a broadband noise component. In the absence of leakage, both components were found to exhibit a dipole-like radiation pattern. Leakage was found to have a strong influence on the directivity of the blade passing tone. The increase of the flow resistance caused by adding the acoustical lining resulted in a nearly symmetric reduction of sound radiation.
机译:这项研究的目的是开发可视化来自航空声源的声辐射的方法,以识别其声源强度分布,辐射图并量化噪声控制解决方案的性能。在此,圆柱形近场声全息术用于该目的。在包括部分相关或不相关子源的源的实际全息测量中,有必要使用多个参考麦克风,以便在全息投影之前,全息图表面上的声场可以分解为互不相干的部分场。在本文中,将介绍确定可视化部分相关的航空声源时所需的参考麦克风数量的过程;进行源非平稳性补偿;并应用正则化。该程序已通过应用于管道风扇得到了证明。进行全息测试以可视化来自该源的原始形式的声辐射。然后对系统进行了更改,以研究对风扇的声音辐射模式进行的两次修改的影响:首先,在风扇和管道组件中产生了泄漏,其次,吸音材料被用于衬砌下游灰尘区域。在这三种情况下的结果均以刀片通过频率和宽带噪声分量显示。在没有泄漏的情况下,发现两个组件都表现出偶极子状的辐射图。发现泄漏对叶片通过音的方向性有很大影响。由于增加了声学衬里而导致的流动阻力的增加导致声音辐射的减少几乎对称。

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