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AN EXPERIMENTAL INVESTIGATION OF STATOR CLOCKING EFFECTS IN A TWO-STAGE LOW-SPEED AXIAL COMPRESSOR

机译:两级低速轴流压气机中定子闭锁效应的实验研究

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The impact of stator clocking on performance and flow of a 2.5-stage axial compressor has been investigated. Stator clocking, the circumferential indexing of adjacent stator rows with equal blade counts, is known as a potential means to modify the flow field in multistage turbomachinery and increase overall efficiencies of both turbines and compressors. These potential effects on turbomachine performance are due to wake-airfoil interactions and primarily depend on the alignment of the downstream stator row with the upstream stator wake path. The present survey describes and discusses the experimental research on stator clocking effects in a low-speed 2.5-stage axial flow compressor, using front loaded CDA blade sections and cantilevered stator rows with identical blade counts. Conventional static pressure tappings were used to locate global peaks in compressor performance for varying Stator 2 clocking positions at different flow coefficients. Results of unsteady total pressure measurements obtained by means of a high-frequency pressure transducer, embedded in the Stator 2 leading edge, give information on Stator 1 wake propagation. Traverse data from pneumatic 5-hole probes show the impact of stator indexing on Stator 2 exit total pressure at different blade spans. Regardless of flow coefficient, the variations of overall compressor efficiency due to Stator 2 clocking are around 0.2% and are exhibiting a near-sinusoidal trend over the clocking angle. It is shown that total pressure measurements at mid-span of Stator 2 leading edge suggest best overall performances for design and low loading conditions, if the Stator 1 wakes pass through mid-passage of Stator 2. At high loading, however, maximum efficiency locates the wake path directly at the leading edge. Due to a considerable span-wise skewness of the upstream stator wake, the aerodynamic clocking position for Stator 2 varies from hub to tip. While it is shown again that this effect weakens the advantages of airfoil indexing on a global scale, stator clocking shows much more potential if only a single blade section is considered.
机译:研究了定子时钟对2.5级轴流式压缩机性能和流量的影响。定子计时,即具有相等叶片数的相邻定子排的周向分度,是一种潜在的手段,可以改变多级涡轮机械中的流场并提高涡轮机和压缩机的整体效率。这些对涡轮机性能的潜在影响归因于尾流翼型相互作用,并且主要取决于下游定子排与上游定子尾流路径的对准。本次调查描述并讨论了低速2.5级轴流式压缩机中定子正时效应的实验研究,该研究使用了前加载CDA叶片部分和具有相同叶片数的悬臂式定子行。传统的静压分接头用于在不同流量系数下改变定子2时钟位置的情况下,确定压缩机性能的整体峰值。通过嵌入在定子2前沿中的高频压力传感器获得的非稳态总压力测量结果可提供有关定子1尾波传播的信息。气动5孔探头的导线数据表明,在不同叶片跨度下,定子分度对定子2出口总压力的影响。不管流量系数如何,由于定子2的计时而导致的整体压缩机效率变化约为0.2%,并且在计时角度上呈现近正弦趋势。结果表明,如果定子1尾流经过定子2的中部通道,则在定子2前沿中跨的总压力测量结果表明,在设计和低负荷条件下,总体性能最佳。唤醒路径直接位于前沿。由于上游定子尾流在翼展方向上存在较大的偏斜度,因此定子2的空气动力计时位置会随着轮毂的不同而变化。虽然再次表明这种效果削弱了全球范围内机翼转位的优势,但如果仅考虑单个叶片部分,则定子计时显示出更大的潜力。

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