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Dynamics of global instabilities in the vaneless diffuser: A numerical approach and its applications

机译:无叶片扩压器中整体不稳定性的动力学:一种数值方法及其应用

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The effect of inviscid main flow and backflow boundary layer at diffuser walls both contribute to the instability of vaneless diffuser. This study is carried out to investigate the instability induced by the inviscid main flow. The biglobal instability analysis adopted here is focused on the large time scale growth of perturbations imposed on a base flow. The diffuser considered has two parallel walls, and the undisturbed flow is assumed to be circumferentially uniform, isentropic, and to have no axial velocity. In order to access the given state is stable or not, a linearized Euler's equations for compressible base flow is used with a small-amplitude perturbation assumption. The eigenvalue problem is established through the spectral collocation discretization. Compared with experimental data, the stability model proposed in this paper is verified. Based on this numerical approach, the influence of inflow condition and geometric parameters, especially the compressibility effect on the stability of diffuser are investigated. And based on the results from some experiment measurement, the reliability of the stability analysis is verified through comparison. It is showed that diffuser instability increases rapidly and the stall rotation speed decreases quickly with the increase of diffuser radius ratio. The largest critical inflow angle can be obtained when the wave number m is around 3-5 for the radius ratio between 1.5 and 2.2. The present biglobal stability method has the capability to predict the onset of rotating stall, especially for wide diffusers.
机译:扩散器壁上无粘性的主流和回流边界层的影响均导致无叶片扩散器的不稳定性。进行这项研究是为了研究由无粘性主流引起的不稳定性。此处采用的双全局不稳定性分析集中于对基本流施加的扰动的大规模扩展。所考虑的扩散器具有两个平行的壁,并且假定无扰流周向均匀,等熵且没有轴向速度。为了访问给定的状态是否稳定,将可压缩基流的线性欧拉方程与小振幅扰动假设一起使用。特征值问题是通过频谱搭配离散化建立的。通过与实验数据的比较,验证了本文提出的稳定性模型。基于这种数值方法,研究了流入条件和几何参数的影响,特别是可压缩性对扩散器稳定性的影响。并且根据一些实验测量的结果,通过比较验证了稳定性分析的可靠性。结果表明,随着扩压器半径比的增加,扩压器的不稳定性迅速增加,失速转速迅速降低。当波数m在1.5和2.2之间的半径比时,波数m为3-5左右时,可以获得最大的临界流入角。当前的双全局稳定性方法具有预测旋转失速开始的能力,特别是对于宽扩散器。

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