Cite this article:
Chen Yong, Huang Yi-Yong, Chen Xiao-Qian, Bai Yu-Zhu, Tan Xiao-Dong. Axisymmetric wave propagation in gas shear flow confined by a rigid-walled pipelineJ. Chin. Phys. B, 2015, 24(4): 044301.
| Chen Yong, Huang Yi-Yong, Chen Xiao-Qian, Bai Yu-Zhu, Tan Xiao-Dong. Axisymmetric wave propagation in gas shear flow confined by a rigid-walled pipelineJ. Chin. Phys. B, 2015, 24(4): 044301. |
Axisymmetric wave propagation in gas shear flow confined by a rigid-walled pipeline
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Abstract
The axisymmetric acoustic wave propagating in a perfect gas with a shear pipeline flow confined by a circular rigid wall is investigated. The governing equations of non-isentropic and isentropic acoustic assumptions are mathematically deduced while the constraint of Zwikker and Kosten is relaxed. An iterative method based on the Fourier-Bessel theory is proposed to semi-analytically solve the proposed models. A comparison of numerical results with literature contributions validates the present contribution. Meanwhile, the features of some high-order transverse modes, which cannot be analyzed based on the Zwikker and Kosten theory, are analyzed. -
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