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On the Use of Experimental Methods to Improve Confidence in Educed Impedance

机译:关于使用实验方法提高诱发阻抗的置信度

摘要

Results from impedance eduction methods developed by NASA Langley Research Center are used throughout the acoustic liner community. In spite of recent enhancements, occasional anomalies persist with these methods, generally at frequencies where the liner produces minimal attenuation. This investigation demonstrates an experimental approach to educe impedance with increased confidence over a desired frequency range, by combining results from successive tests with different cavity depths. A series of tests is conducted with three wire-mesh facesheets, for which the results should be weakly dependent on source sound pressure level and mean grazing flow speed. First, a raylometer is used to measure the DC flow resistance of each facesheet. These facesheets are then mounted onto a frame and a normal incidence tube is used to determine their respective acoustic impedance spectra. A comparison of the acoustic resistance component with the DC flow resistance for each facesheet is used to validate the measurement process. Next, each facesheet is successively mounted onto three frames with different cavity depths, and a grazing flow impedance tube is used to educe their respective acoustic impedance spectra with and without mean flow. The no-flow results are compared with those measured in the normal incidence tube to validate the impedance eduction method. Since the anti-resonance frequency varies with cavity depth, each sample provides robust results over a different frequency range. Hence, a combination of results can be used to determine the facesheet acoustic resistance. When combined with the acoustic reactance, observed to be weakly dependent on the source sound pressure level and grazing flow Mach number, the acoustic impedance can be educed with increased confidence. Representative results of these tests are discussed, and the complete database is available in electronic format upon request.
机译:NASA兰利研究中心开发的阻抗降低方法的结果在整个声学衬里社区中得到使用。尽管最近有所增强,但这些方法偶尔仍会出现异常,通常在衬套产生最小衰减的频率上。这项研究表明,通过结合不同腔深度的连续测试结果,可以在期望的频率范围内以更高的置信度降低阻抗,从而获得了一种实验方法。使用三个金属丝网面板进行了一系列测试,其结果应弱依赖于声源声压级和平均放牧流速。首先,使用测速仪测量每个面板的直流流动阻力。然后将这些面板安装到框架上,并使用法向入射管确定其各自的声阻抗谱。将每个面板的声阻分量与DC流阻进行比较,以验证测量过程。接下来,将每个面板依次安装到具有不同腔深度的三个框架上,并使用掠流阻抗管导出有无平均流量的声阻抗谱。将无流量结果与在垂直入射管中测量的结果进行比较,以验证阻抗降低方法。由于反谐振频率随腔深度而变化,因此每个样本在不同的频率范围内均提供可靠的结果。因此,结果的组合可以用于确定面板的声阻抗。当与声抗结合时,观察到它与源声压水平和掠流马赫数几乎不相关,则可以以更高的置信度得出声阻抗。讨论了这些测试的代表性结果,并可根据要求以电子格式提供完整的数据库。

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