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首页> 外文期刊>Journal of turbomachinery >Blade Aerodynamic Damping Variation With Rotor-Stator Gap: A Computational Study Using Single-Passage Approach
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Blade Aerodynamic Damping Variation With Rotor-Stator Gap: A Computational Study Using Single-Passage Approach

机译:转子-定子间隙的叶片空气动力学阻尼变化:使用单通道方法的计算研究

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摘要

One of the outstanding issues in turbomachinery aeromechanic analysis is the intrarow interaction effects. The present work is aimed at a systematic examination of rotor-stator gap effects on blade aerodynamic damping by using a three-dimensional (3D) time-domain single-passage Navier-Stokes solver. The method is based on the upwind finite volume discretization and the single-passage shape-correction approach with enhanced accuracy and efficiency for unsteady transonic flows prediction. A significant speedup (by a factor of 20) over to a conventional whole annulus solution has been achieved. A parametric study with different rotor-stator gaps (56%-216% rotor tip chord) for a 3D transonic compressor stage illustrates that the reflection from an adjacent stator row can change rotor aerodynamic damping by up to 100% depending on the intrarow gap spacing. Furthermore, this rotor aerodamping dependency on the intrarow gap seems also to be affected by the number of stator blades. The predicted nonmonotonic relationship between the rotor blade aerodynamic damping and the gap spacing suggests the existence of an optimum gap regarding rotor flutter stability and/or forced response stress levels.
机译:涡轮机械空气力学分析中的突出问题之一是行内相互作用效应。本工作旨在通过使用三维(3D)时域单通道Navier-Stokes求解器,系统地研究转子-定子间隙对叶片气动阻尼的影响。该方法基于逆风有限体积离散化和具有增强的准确性和效率的单通道形状校正方法,用于非平稳跨音速流的预测。与传统的整个环形解决方案相比,已经实现了显着的加速(提高了20倍)。对3D跨音速压缩机级使用不同的转子-定子间隙(56%-216%转子叶尖弦)的参数研究表明,来自相邻定子行的反射最多可以改变100%的转子空气动力学阻尼,具体取决于行内间隙间距。此外,这种转子对行内间隙的气阻作用似乎也受到定子叶片数量的影响。转子叶片空气动力学阻尼与间隙间距之间的预测非单调关系表明,存在关于转子颤振稳定性和/或强制响应应力水平的最佳间隙。

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