首页> 外文会议>ASME Turbo Expo >EXPERIMENTAL OFF-DESIGN INVESTIGATION OF UNSTEADY SECONDARY FLOW PHENOMENA IN A THREE-STAGE AXIAL COMPRESSOR AT 68 NOMINAL SPEED
【24h】

EXPERIMENTAL OFF-DESIGN INVESTIGATION OF UNSTEADY SECONDARY FLOW PHENOMENA IN A THREE-STAGE AXIAL COMPRESSOR AT 68 NOMINAL SPEED

机译:在三级轴流压缩机中的实验性Off-Design调查在三级轴流压缩机中以68%标称速度

获取原文

摘要

This paper deals with unsteady measurements in a high-speed three-stage axial compressor with inlet guide vanes (IGV) and controlled diffusion airfoils (CDA) at off-design conditions. The compressor under consideration exhibits design features of real industrial compressors. The main emphasis is put on the experimental investigation of two operating points at 68% nominal speed where a significant mismatching of the stages occurs. The first operating point is the last stable one near the surge margin whereas the second one represents choke. Probe traverses with a high resolution both in space and time show the significant potential upstream influence of the rotor blades. This effect and the disturbances caused by the convected wakes do strongly influence the unsteady boundary layer behaviour of the stator blades which are detected by glue-on hot-film sensors at different spanwise positions. Dynamic pressure transducers on the casing show that the structure of the rotor tip clearance flow strongly depends on the operating conditions of the compressor. Conclusions can be drawn concerning the consideration of the discussed unsteady effects within the design process of multistage axial compressors with respect to the presented results.
机译:本文涉及高速三级轴流压缩机的不稳定测量,进气引导叶片(IGV)和在非设计条件下控制扩散翼型(CDA)。正在考虑的压缩机展示了真正的工业压缩机的设计特征。主要重点在于以68%的标称速度进行两次操作点的实验研究,其中发生了显着不匹配的阶段。第一个操作点是最后一个稳定的距离浪涌缘附近,而第二个操作点代表扼流圈。探针在空间和时间内具有高分辨率,显示转子叶片的显着潜在上游影响。这种效果和由对流唤醒引起的扰动确实强烈影响定子叶片的不稳定边界层行为,该定子叶片在不同的翼展位置处通过胶上的热膜传感器检测到的定子叶片。壳体上的动态压力换能器表明转子尖端间隙的结构强烈取决于压缩机的操作条件。可以得出关于考虑讨论的多级轴向压缩机的设计过程中所讨论的不稳定效应的结论。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号