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EVOLUTION OF THE TIP LEAKAGE VORTEX IN AN AXIAL COMPRESSOR ROTOR

机译:轴流压气机转子尖端泄漏涡的演变

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摘要

The evolution of tip leakage vortex is analyzed at both design and near stall conditions based on instantaneous and averaged velocity and vorticity distributions in cross flow sections measured with Stereoscopic Particle Image Velocimetry (SPIV) in a large-scale low-speed compressor facility. Formation, becoming unstable, and interaction of small-scale vortices and mainstream characterize the evolution of the tip leakage vortex in the compressor rotor. These processes influence the mainstream in very different ways. The process of leakage vortex becoming unstable is relatively smooth at design condition and vortex breakdown occurs at near stall condition for the case in the experiment. The main reason is that the critical condition occurs only in the core of tip leakage vortex at near stall condition. The effect of Coriolis force and centrifugal force on the stability of tip leakage vortex is analyzed theoretically with hypothesis of incompressible, inviscid and quasi-cylindrical swirling flow.
机译:在大型低速压缩机设施中,通过使用立体粒子图像测速仪(SPIV)测量的横流截面中的瞬时和平均速度和涡度分布,分析了在设计条件和接近失速条件下的尖端泄漏涡流的演变。形成,变得不稳定以及小规模涡旋和主流的相互作用表征了压缩机转子中尖端泄漏涡的演变。这些过程以非常不同的方式影响主流。在设计条件下,泄漏涡变得不稳定的过程相对平稳,并且在实验情况下在接近失速条件下发生涡破坏。主要原因是临界条件仅发生在接近失速条件下的尖端泄漏涡流的核心。理论上以不可压缩,无粘性和准圆柱形旋流为假说,分析了科里奥利力和离心力对尖端泄漏涡旋稳定性的影响。

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