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首页> 外文期刊>International Journal of Aeroacoustics >Spectral, modal and coherence analysis of sum and difference scattering of narrowband noise in turbomachinery
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Spectral, modal and coherence analysis of sum and difference scattering of narrowband noise in turbomachinery

机译:涡轮机械中窄带噪声的和与差散射的频谱,模态和相干分析

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摘要

The phenomenon of sum and difference frequency scattering of narrowband noise as it interacts with ducted rotating turbomachinery is studied experimentally in this article. This phenomenon will affect the spectral and modal distribution of the noise downstream of rotating turbomachinery, which must be considered in order to optimise any acoustic mitigation methods installed inside the engine. In the experimental set-up, narrowband noise is generated by a loudspeaker located at the upstream end of the test duct which then propagates through a rotor stage. A microphone array located downstream of the rotor is used to examine the spectral and modal distribution of the acoustic pressure field at a single axial location. The results from this analysis are compared with pre-existing theory which had not previously been experimentally validated in the literature. This theory may be used to predict the modal content of the scattered noise. A coherence analysis is also presented using microphones upstream and downstream of the rotor stage in order to assess whether sum and difference scattering is best predicted by a linear or non-linear model. The results from this study serve to enhance our current understanding of sum and difference scattering of narrowband noise through turbomachinery stages, and highlight interesting results from this interaction such as potential overlapping of incident and scattered noise which may otherwise be overlooked.
机译:本文通过实验研究了窄带噪声与管道旋转涡轮机械相互作用时的总和和差频散射现象。这种现象将影响旋转涡轮机械下游噪声的频谱和模态分布,必须考虑这些噪声,以优化安装在发动机内部的任何声学缓解方法。在实验设置中,窄带噪声是由位于测试管道上游端的扬声器产生的,然后通过转子级传播。位于转子下游的麦克风阵列用于检查声压场在单个轴向位置的频谱和模式分布。将该分析的结果与以前没有在文献中进行实验验证的现有理论进行比较。该理论可用于预测散射噪声的模态含量。还使用转子级上游和下游的麦克风进行了相干分析,以评估通过线性模型还是非线性模型可以最好地预测总和和差异散射。这项研究的结果有助于增强我们当前对透平机械阶段窄带噪声的总和和差异散射的理解,并强调这种相互作用的有趣结果,例如入射噪声和散射噪声的潜在重叠,否则可能会被忽略。

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