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首页> 外文期刊>Journal of Sound and Vibration >Acoustic quasi-steady response of thin walled perforated liners with bias and grazing flows
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Acoustic quasi-steady response of thin walled perforated liners with bias and grazing flows

机译:具有偏置和放牧流动的薄壁穿孔衬垫的声学准稳定响应

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AbstractThis paper considers the acoustic performance of a passive damper in which acoustic energy is absorbed by orifices located within a thin plate (i.e. a perforated liner). The perforated liner, which incorporates orifices of length to diameter ratios of ~0.2, is supplied with flow from a passage. This enables the liner to be subject to a flow that grazes the upstream side of each liner orifice. Flow can also pass through each orifice to create a bias flow. Hence the liner can be subjected to a range of grazing and bias flow combinations. Two types of liners were investigated which incorporated either simple plain or ‘skewed’ orifices. For the mean flow field, data is presented which shows that the mean discharge coefficient of each liner is determined by the grazing to bias flow velocity ratio. In addition, measurements of the unsteady flow field through each liner were also undertaken and mainly presented in terms of the measured admittance. For a given liner geometry, the admittance values were found to be comparable for a given Strouhal number (with the exception of the lowest bias to grazing flow velocity ratio tested) which has also been noted by other authors. The paper shows that this is consistent with the unsteady orifice flow being associated with variations inboththe velocity and the area of the vena contracta downstream of each orifice. These same basic characteristics were observed for both of the liner geometries tested. This provides a relatively simple means of predicting the acoustic liner characteristics over the specified operating range.]]>
机译:<![CDATA [ 抽象 本文考虑了被动阻尼器的声学性能,其中声能量被位于薄板内的孔吸收(即穿孔衬里)。穿孔衬里,其掺入直径比为约0.2的直径比,从通道中提供。这使得衬垫能够受到在每个衬里孔的上游侧进行喷射的流动。流程也可以通过每个孔来产生偏置流。因此,衬里可以受到一系列放牧和偏置流量组合。调查了两种类型的衬里,该衬里融入了简单的平原或“偏斜”孔。对于平均流场,提出了数据,其示出了每个衬里的平均放电系数由覆盖物与偏置流速比确定。此外,还通过每个衬里进行非定常流场的测量,并主要以测量的导纳而呈现。对于给定的衬里几何形状,发现导纳值对于给定的斯特鲁姆数(除了最低偏置到掠过流速比测试的最低偏差之外)也是由其他作者指出的。本文表明,这与不稳定的孔隙流量与斜体>在每个孔口下游的vena收缩的速度和区域的速度相关。对于测试的两个衬垫几何形状,观察到这些相同的基本特征。这提供了一种相对简单的方法,可以通过指定的工作范围预测声学衬里特性。 ]]>

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