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Acoustic Response of Multiple Shallow Cavities and Prediction of Self-Excited Acoustic Oscillations

机译:多浅腔的声学响应及自激声振荡预测

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Self-sustaining oscillations of flow over ducted cavities and in corrugated pipes are a known source of tonal noise and excessive vibration in industrial applications. Corrugated pipes can be modeled as a series of axisymmetric cavities. In the current study, the aero-acoustic sources generated by one-, two-, and three-cavity configurations have been experimentally investigated by means of the standing wave method (SWM) for a wide range of Strouhal numbers and acoustic excitation levels. The source strength is found to increase in a nonlinear manner with increasing the number of cavities. Moreover, the self-excited acoustic resonances of the same cavity combinations are investigated. The source characteristics are compared with the observed lock-in range from the self-excited experiments. A prediction model is also developed to utilize the measured source characteristics for estimating the amplitude of the cavities self-sustained oscillations. The self-excited experimental data are used to assess the effect of acoustic absorption at the cavity edges. This absorption is found to be substantial and must be accounted for in the prediction model. When the model is supplemented with appropriate loss coefficients, it predicts fairly well the pulsation amplitude within the resonance lock-in range of the studied multiple cavity configurations.
机译:对管道腔和波纹管的流动振动是一种已知的音调噪声和工业应用过度振动的源。波纹管可以被建模为一系列轴对称腔。在目前的研究中,通过常规波法(SWM)通过常规波动数和声学激发水平进行实验研究了由一个,两个和三腔配置产生的空气声源。发现源强度随着增加空腔的数量而以非线性方式增加。此外,研究了相同腔组合的自激声谐振。将源特性与来自自激的实验的观察到的锁定范围进行比较。还开发了预测模型以利用测量的源特性,以估计空腔自持续振荡的幅度。自激的实验数据用于评估腔边缘处的声学吸收的影响。发现这种吸收是基本的,必须在预测模型中占据。当模型被补充有适当的损耗系数时,它预测到所研究的多腔配置的共振锁定范围内的脉动幅度相当好。

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