首页> 外文会议>ASME Fluids Engineering Division Meeting >UNSTEADY BEHAVIOR OF LEADING EDGE VORTEX AND DIFFUSER STALL INCEPTION IN A CENTRIFUGAL COMPRESSOR WITH VANED DIFFUSER
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UNSTEADY BEHAVIOR OF LEADING EDGE VORTEX AND DIFFUSER STALL INCEPTION IN A CENTRIFUGAL COMPRESSOR WITH VANED DIFFUSER

机译:前沿涡旋和扩散器在离心式压缩机中逃逸的不稳定行为,带有叶片漫射器

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Experiments and numerical analyses were used to investigate the unsteady behavior of a vortex generated on the leading-edge of a diffuser (i.e., leading-edge vortex (LEV)) and the diffuser stall inception in a centrifugal compressor equipped with vaned diffusers. The LEV is distinct from the separation vortex of the diffuser's leading edge and passage vortex of the diffuser; it is generated by the accumulation of vortices caused by the velocity gradient of the impeller discharge flow. The LEV increases with decreasing velocity in the diffuser passage and forms a huge flow blockage within the diffuser passage. Therefore, the LEV may help cause the diffuser stall inception in the centrifugal compressor. A diffuser vane, that was tapered only on the hub side was designed and used in the experiment. The results of the computational fluid dynamics analysis and experiments showed that the tapered diffuser vane can suppress LEV evolution during off-design operations. Therefore, the tapered diffuser vane may control the diffuser stall inception in a centrifugal compressor by suppressing LEV evolution.
机译:使用实验和数值分析来研究在扩散器的前缘上产生的涡流的不稳定行为(即,前沿涡流(LEV))和配备有叶片扩散器的离心压缩机中的扩散器销钉。 lev与扩散器的前缘和通道涡流的分离涡流不同;它由由叶轮排出流程的速度梯度引起的涡流的累积产生。利用漫射器通道中的速度降低,在扩散器通道内形成巨大的流量阻塞,LEV随着速度堵塞。因此,LEV可以有助于使扩散器在离心式压缩机中销定终止​​。仅在枢纽侧逐渐逐渐变细的漫射器叶片在实验中设计和使用。计算流体动力学分析和实验的结果表明,锥形扩散器叶片可以在非设计操作期间抑制LEV演变。因此,锥形漫射器叶片可以通过抑制Lev Evolution来控制在离心式压缩机中的扩散器失速终止。

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