首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Vortex development induced by part gap geometry and endwall configurations for variable stator vanes in a compressor cascade
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Vortex development induced by part gap geometry and endwall configurations for variable stator vanes in a compressor cascade

机译:压缩机级联中可变定子叶片的零件间隙几何形状和端壁配置引起的涡流发展

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The article describes investigations on the three-dimensional (3D) flowfield development near the endwall of a linear compressor cascade which is caused by specific part gap and endwall concepts of adjustable stator vanes. Their beneficial or harmful characteristics, previously measured with outlet loss and flow turning distributions, are investigated inside the passage at different stagger angles to analyse the origin and the interaction of the geometry-induced vortex system. Qualitative blade-to-blade measurements were conducted with particle image velocimetry in several spanwise positions as well as oil flow visualisation on the blade surfaces and the endwall. Improved three-dimensional (3D) numerical Reynolds-averaged Navier-Stokes (RANS) calculations with Reynolds-stress turbulence models were carried out and enhance the experimental findings. Results indicate extensive interactions between secondary flow and leakage flow through a penny gap depending on the aerodynamic loading. The part clearance vortex development and its impact to the blade boundary layers downstream the passage is visualised and enhances the understanding of the geometry effect. Also, the impact of the endwall concepts without radial clearances to the endwall boundary layer is shown and explains their beneficial characteristics compared to a reference geometry.
机译:本文介绍了对线性压缩机叶栅端壁附近的三维(3D)流场发展的研究,这是由特定的部分间隙和可调节定子叶片的端壁概念引起的。在通道内部以不同的交错角度研究了它们的有益或有害特性(以前用出口损失和流量转向分布来衡量),以分析几何诱发涡流系统的起源和相互作用。使用几个跨度位置的粒子图像测速仪对叶片表面进行定性测量,并在叶片表面和端壁观察油流。使用雷诺应力湍流模型进行了改进的三维(3D)数值雷诺平均Navier-Stokes(RANS)计算,并增强了实验结果。结果表明,取决于气动载荷,二次流量和泄漏流量之间会通过细小间隙发生广泛的相互作用。可视化零件间隙涡流的发展及其对通道下游叶片边界层的影响,并增强了对几何效应的理解。此外,显示了没有径向间隙的端壁概念对端壁边界层的影响,并解释了它们与参考几何图形相比的有益特性。

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