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首页> 外文期刊>Journal of Fluids and Structures >Control of blade flutter using casing with acoustic treatment
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Control of blade flutter using casing with acoustic treatment

机译:使用带有声学处理的外壳控制叶片颤振

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Control of blade flutter by use of a nonrigid wall may have several advantages compared with the existing method of suppressing blade flutter; but it indeed leads to numerous theoretical problems which have never been clearly elucidated by the existing theories. In the present investigation a new lifting surface model has been suggested based on the application of generalized Green's function theory and double Fourier transformation technique, which is expressed as various upwash integral equations and the corresponding kernel function. In particular, it is found that the change of wall boundary condition not only affects the eigenvalues of the system but also the eigenfunction normalizing factor in comparison with a rigid boundary condition, and it is these variations that finally affect the flow and acoustic field. In addition, the numerical results show that whether a nonrigid wall has positive or negative effect on suppressing blade flutter will mainly depend on what admittance value the wall possesses. It is clear that this conclusion has two implications. One is that there is indeed some possibility for designing a liner for suppressing blade flutter. The second is that modern jet engines using a nonrigid wall or liner to suppress the noise can introduce a detrimental effect on blade flutter stability.
机译:与现有的抑制叶片颤动的方法相比,通过使用非刚性壁来控制叶片颤动具有多个优点。但这确实导致了许多理论问题,而现有理论从未明确阐明这些问题。在本研究中,基于广义格林函数理论和双重傅里叶变换技术的应用,提出了一种新的起伏表面模型,该模型表示为各种上冲积分方程和相应的核函数。特别是,发现壁边界条件的变化与刚性边界条件相比,不仅影响系统的特征值,而且还影响特征函数归一化因子,正是这些变化最终影响了流动和声场。另外,数值结果表明,非刚性壁对抑制叶片颤动具有正作用还是负作用将主要取决于壁所具有的导纳值。显然,这一结论有两个含义。一种是确实存在设计抑制叶片颤动的衬套的可能性。第二个问题是,使用非刚性壁或衬套抑制噪声的现代喷气发动机可能会对叶片颤振稳定性产生不利影响。

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