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Vane clocking effects in an embedded compressor stage.

机译:嵌入式压缩机级中的叶片时钟效应。

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摘要

The objective of this research was to experimentally investigate the effects of vane clocking, the circumferential indexing of adjacent vane rows with similar vane counts, in an embedded compressor stage. Experiments were performed in the Purdue 3-Stage Compressor, which consists of an IGV followed by three stages. The IGV, Stator 1, and Stator 2 have identical vane counts of 44, and the effects of clocking were studied on Stage 2.;The clocking configuration that located the upstream vane wake on the Stator 2 leading edge was identified with total pressure measurements at the inlet to Stator 2 and confirmed with measurements at the exit of Stator 2. For both loading conditions, the total temperature results showed that there was no measurable change associated with vane clocking in the amount of work done on the flow.;At design loading, the change in stage efficiency with vane clocking was 0.27 points between the maximum and minimum efficiency clocking configurations. The maximum efficiency configuration was the case where the Stator 1 wake impinged on the Stator 2 leading edge. This condition produced a shallower and thinner Stator 2 wake compared to the clocking configuration that located the wake in the middle of the Stator 2 passage. By locating the Stator 1 wake at the leading edge, it dampened the Stator 2 boundary layer response to inlet fluctuations associated with the Rotor 2 wakes.;At high loading, the change in Stage 2 efficiency increased to 1.07 points; however, the maximum efficiency clocking configuration was the case where the Stator 1 wake passed through the middle of the downstream vane passage. At high loading, the flow physics associated with vane clocking were different than at design loading because the location of the Stator 1 wake fluid on the Stator 2 leading edge triggered a boundary layer separation on the suction side of Stator 2 producing a wider and deeper wake.;Vane clocking essentially affects the amount of interaction between the upstream vane wake and the boundary layer of the downstream vane. Whether this dampens the adverse effects of the rotor wakes or triggers boundary layer separation will depend on the flow conditions such as Reynolds number, turbulence intensity, and pressure gradient (vane loading), to name a few.
机译:这项研究的目的是在嵌入式压缩机阶段,通过实验研究叶片时钟的影响,即具有相似叶片数的相邻叶片排的圆周索引。实验是在Purdue 3阶段压缩机中进行的,该压缩机由IGV和随后的三个阶段组成。 IGV,定子1和定子2的叶片数相同,为44,并且在阶段2上研究了时钟的影响。通过将总压力测量值确定为,将上游叶片尾流定位在定子2前沿上的时钟配置已确定。在定子2的入口处,并在定子2的出口处进行了测量确认。对于两种装载条件,总温度结果表明,与叶片计时相关的流量所做的工作量没有可测量的变化。 ,最高效率和最低效率时钟配置之间的级效率随叶片时钟的变化为0.27点。最大效率配置是定子1尾流撞击到定子2前缘的情况。与将定子尾流放置在定子2通道中间的计时配置相比,这种情况产生了更浅,更薄的定子2尾流。通过将定子1尾流定位在前缘,可以减弱定子2边界层对与转子2尾流相关的入口波动的响应。在高负载下,阶段2效率的变化增加到1.07点;但是,最大效率计时配置是定子1尾流经过下游叶片通道中间的情况。在高负荷下,与叶片计时相关的流动物理学与在设计负荷下不同,这是因为定子1尾流流体在定子2前缘上的位置触发了定子2吸入侧的边界层分离,从而产生了更宽更深的尾流。叶片计时实质上会影响上游叶片尾流和下游叶片边界层之间的相互作用量。这是否减轻转子尾流的不利影响或触发边界层分离,将取决于流动条件,例如雷诺数,湍流强度和压力梯度(叶片载荷),仅举几例。

著录项

  • 作者

    Key, Nicole Leanne.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Aerospace.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 234 p.
  • 总页数 234
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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