首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.6 pt.A; 20050606-09; Reno-Tahoe,NV(US) >INTERACTION OF TIP CLEARANCE FLOW AND THREE-DIMENSIONAL SEPARATIONS IN AXIAL COMPRESSORS
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INTERACTION OF TIP CLEARANCE FLOW AND THREE-DIMENSIONAL SEPARATIONS IN AXIAL COMPRESSORS

机译:轴流压气机尖端间隙流与三维分离的相互作用

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This paper considers the interaction of tip clearance flow with three-dimensional (3D) separations in the corner region of a compressor cascade. Three-dimensional numerical computations were carried out using ten levels of tip clearance, ranging from zero to 2.18% of blade chord. The 3D separations on the blade suction surface were largely removed by the clearance flow for clearance about 0.58% of chord. For this cascade, experimental results at zero and 1.7% chord tip clearance were used to assess the validity of the numerical predictions. The removal mechanism was associated with the suppression of the leading edge horseshoe vortex and the interaction of tip clearance flow with the endwall boundary layer, which develops into a secondary flow as it is drifted towards the blade suction surface. Such interaction leads to the formation of a new 3D separation line on the endwall. The separation line forms the base of a separated stream surface which rolls up into the clearance vortex.
机译:本文考虑了叶栅间隙流与压缩机叶栅角部区域中的三维(3D)分离的相互作用。使用十个级别的叶梢间隙(范围为叶片弦的零到2.18%)进行了三维数值计算。叶片吸力表面上的3D分离大部分通过间隙流去除,间隙约为弦的0.58%。对于此级联,使用弦尖间隙为零和1.7%的实验结果来评估数值预测的有效性。去除机制与前缘马蹄涡旋的抑制以及尖端间隙流与端壁边界层的相互作用有关,当其向叶片吸力面漂移时,该边界层逐渐发展为二次流。这种相互作用导致在端壁上形成新的3D分离线。分离线形成分离的液流表面的底部,该液流表面卷成间隙涡流。

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