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BOUNDARY LAYER CONTROL OF AN AXIAL COMPRESSOR CASCADE USING NONCONVENTIONAL VORTEX GENERATORS

机译:基于非常规涡发生器的轴流压气机叶栅边界层控制

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Boundary layer control plays a decisive role in controlling the performance of axial compressor. Vortex generators are well known as passive control devices of the boundary layer. In the current study, two nonconventional types of vortex generators are used and their effects are investigated. The used vortex generators are doublet, and wishbone. Three dimensional turbulent compressible flow equations through an axial compressor cascade are numerically simulated. Comparisons between cascade with and without vortex generators are performed to predict the effect of inserting vortex generator in the overall performance of the axial compressor. Results indicate that using vortex generators leads to eliminate or delay the separation on the blade suction surface, as well as the endwall. Furthermore, the effects of the vortex generators and their geometrical parameters on the aerodynamic performance of the cascade are documented. In conclusion, while the investigated vortex generators cause a slight increase in the total pressure loss, a significant reduction in the skin friction coefficient at the bottom endwall is found. This reduction is estimated to be about 46% using doublet and 32% using wishbone.
机译:边界层控制在控制轴向压缩机的性能中起着决定性的作用。涡流发生器是边界层的无源控制设备,众所周知。在当前的研究中,使用了两种非常规类型的涡流发生器,并研究了它们的影响。使用的涡流发生器是doublet和叉骨。通过轴向压缩机级联的三维湍流可压缩流方程进行了数值模拟。在有和没有涡流发生器的叶栅之间进行比较,以预测插入涡流发生器对轴向压缩机整体性能的影响。结果表明,使用涡流发生器可消除或延迟叶片吸入表面以及端壁之间的分离。此外,还记录了涡流发生器及其几何参数对叶栅空气动力学性能的影响。总之,虽然研究的涡流发生器导致总压力损失略有增加,但发现底端壁处的皮肤摩擦系数显着降低。使用doublet估计减少约46%,使用叉骨估计减少32%。

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