首页> 外文会议>International Symposium on Unsteady Aerodynamics, Aeroacoustics and Aeroelasticity of Turbomachines >COMPUTATION OF CASCADE FLUTTER WITH A COUPLED AERODYNAMIC AND STRUCTURAL MODEL
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COMPUTATION OF CASCADE FLUTTER WITH A COUPLED AERODYNAMIC AND STRUCTURAL MODEL

机译:用耦合空气动力学和结构模型计算级联颤动的计算

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A computational method for flutter simulation of turbomachinery cascades is presented. The flow through multiple blade passages is calculated using a time-domain approach with coupled aerodynamic and structural models. The unsteady Euler/Navier-Stokes equations are solved in 2D using a second-order implicit scheme with dual time-stepping and a multigrid method. A structural model for the blades is integrated in time together with the flow field. Information between structural and aerodynamic models is exchanged until convergence in each real-time step. The computations are performed on parallel computers using the Message Passing Interface (MPI). Computational results for a cascade are presented and compared with those obtained by the conventional energy method and with experimental and numerical data by other authors. Significant differences are found between the two methods at low mass ratios. Possibilities of nonlinear flutter are demonstrated at certain transonic conditions.
机译:提出了一种涡轮机械级联颤动模拟的计算方法。使用具有耦合空气动力学和结构模型的时域方法计算通过多刀片通道的流动。不稳定的euler / navier-stokes方程在2d中使用二阶隐式方案解决,具有双重时间级步骤和多重资源方法。叶片的结构模型与流场一起集成在一起。结构和空气动力学模型之间的信息在每个实时步骤中进行收敛。使用消息传递接口(MPI)对并行计算机执行计算。呈现级联的计算结果,并与传统能量方法获得的那些和其他作者的实验和数值数据进行比较。在低质量比例下两种方法之间发现了显着差异。在某些跨音质条件下证明了非线性颤动的可能性。

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