Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4924286 | Journal of Sound and Vibration | 2017 | 18 Pages |
Abstract
To overcome this limitation, a phenomenological methodology is proposed in this work that allows for the sound extrapolation of experimental results to flow conditions different from those used in the measurements. The transfer matrix is obtained from tests in an impulse rig for different excitation amplitudes and mean flows. The experimental coefficients of the transmission matrix of the device are fitted to Fourier series. It allows treating the influence of the flow conditions on the acoustic response, which is manifested on changes in the characteristic periods, separately from the specific properties of every device. In order to provide predictive capabilities to the method, the Fourier series approach is coupled to a gas dynamics model able to account for the sensitivity of propagation velocity to variations in the flow conditions.
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Authors
A.J. Torregrosa, F.J. Arnau, P. Piqueras, E.J. Sanchis, H. Tartoussi,