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Acoustic field around a transonic cavity flow

机译:跨音腔流动周围的声场

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>This paper describes new techniques for analysing cavity flows. The beamforming method is used to estimate the pressure fluctuations inside a resonant transonic cavity, highlighting the localisation of the sources of noise. The method produces insightful results and only requires the use of an acoustic array and a mean flow-field. The technique models the noise propagation in a simple and efficient way, applicable for wind tunnel test. In addition, this paper discusses the generation of the cavity tones. Computational fluid dynamics results are analysed using a superposition of reflected acoustic waves driven by the cavity flow. This analysis shows that the time-averaged flow-field drives the frequencies of the tones, while the flow-field fluctuations drive their amplitude. In addition, the tonal dynamics of the cavity flow are represented by a simple model with standing wave oscillations and their modulation. This work is complementary to the well-established Rossiter cavity model.
机译:>本文介绍了用于分析腔流的新技术。波束成形方法用于估计谐振跨音阶内腔内的压力波动,突出显示噪声源的定位。该方法产生富有识别结果,只需要使用声学阵列和平均流场。该技术以简单有效的方式模拟噪声传播,适用于风洞测试。此外,本文讨论了腔色的产生。使用由腔流量驱动的反射声波的叠加来分析计算流体动力学。该分析表明,时间平均流场驱动音调的频率,而流场波动驱动其幅度。另外,腔流量的音调动力学由具有驻波振荡的简单模型及其调制表示。这项工作与良好的罗斯特腔模型互补。

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