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On Acoustic Source Specification for Rotor-Stator Interaction Noise Prediction

机译:转子-定子相互作用噪声预测的声源规范

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摘要

This paper describes the use of measured source data to assess the effects of acoustic source specification on rotor-stator interaction noise predictions. Specifically, the acoustic propagation and radiation portions of a recently developed coupled computational approach are used to predict tonal rotor-stator interaction noise from a benchmark configuration. In addition to the use of full measured data, randomization of source mode relative phases is also considered for specification of the acoustic source within the computational approach. Comparisons with sideline noise measurements are performed to investigate the effects of various source descriptions on both inlet and exhaust predictions. The inclusion of additional modal source content is shown to have a much greater influence on the inlet results. Reasonable agreement between predicted and measured levels is achieved for the inlet, as well as the exhaust when shear layer effects are taken into account. For the number of trials considered, phase randomized predictions follow statistical distributions similar to those found in previous statistical source investigations. The shape of the predicted directivity pattern relative to measurements also improved with phase randomization, having predicted levels generally within one standard deviation of the measured levels.
机译:本文介绍了使用测量的源数据评估声源规范对转子-定子相互作用噪声预测的影响。具体而言,最近开发的耦合计算方法的声传播和辐射部分用于根据基准配置预测音调转子-定子相互作用的噪声。除了使用完整的测量数据外,在计算方法中还应考虑源模式相对相位的随机化,以指定声源。进行了与边线噪声测量的比较,以研究各种来源描述对进气和排气预测的影响。包含其他模态源含量对进口结果具有更大的影响。考虑到剪切层的影响,在进气口和排气口的预测水平与测量水平之间达成合理的一致。对于考虑的试验数量,阶段随机预测遵循的统计分布与以前的统计来源调查中发现的统计分布相似。相对于测量值的预测方向性图案的形状也随着相位随机化而得到改善,其预测水平通常在测量水平的一个标准偏差内。

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