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Transfer element method with application to acoustic design of aeroengine nacelle
Authors:Wang Xiaoyu  Sun Xiaofeng
Institution:a School of Energy and Power Engineering, Beihang University, Beijing 100191, China;
b Collaborative Innovation Center for Advanced Aero-Engine, Beijing 100191, China
Abstract: In the present survey, various methods for the acoustic design of aeroengine nacelle are first briefly introduced along with the comments on their advantages and disadvantages for practical application, and then detailed analysis and discussion focus on a kind of new method which is called "transfer element method" (TEM) with emphasis on its application in the following three problems: turbomachinery noise generations, sound transmission in ducts and radiation from the inlet and outlet of ducts, as well as the interaction between them. In the theoretical frame of the TEM, the solution of acoustic field in an infinite duct with stator sound source or liner is extended to that in a finite domain with all knows and unknowns on the interface plane, and the relevant acoustic field is solved by setting up matching equation. In addition, based on combining the TEM with the boundary element method (BEM) by establishing the pressure and its derivative continuum conditions on the inlet and outlet surface, the sound radiation from the inlet and outlet of ducts can also be investigated. Finally, the effects of various interactions between the sound source and acoustic treatment have been discussed in this survey. The numerical examples indicate that it is quite important to consider the effect of such interactions on sound attenuation during the acoustic design of aeroengine nacelle.
Keywords:Duct acoustics  Equivalent surface source method  Interaction of sound source and acoustic treatment  Acoustic liner  Three-dimensional lifting surface theory  Transfer element method  Aeroengine noise
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