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Vane Clocking Effects on Stator Suction Side Boundary Layers in a Multistage Compressor

机译:叶片计时对多级压缩机中定子吸气侧边界层的影响

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The stator inlet flow field in a multistage compressor varies in the pitchwise direction due to upstream vane wakes and how those wakes interact with the upstream rotor tip leakage flows. If successive vane rows have the same count, then vane clocking can be used to position the downstream vane in the optimum circumferential position for minimum vane loss. This paper explores vane clocking effects on the suction side vane boundary layer development by measuring the quasi-wall shear stress on the downstream vane at three spanwise locations. Comparisons between the boundary layer transition on Stator 1 and Stator 2 are made to emphasize the impact of rotor-rotor interactions which are not present for Stator 1 and yet contribute significantly to transition on Stator 2. Vane clocking can move the boundary layer transition in the path between the wakes by up to 24% of the suction side length at midspan by altering the influence of the Rotor 1 wakes in the 3/rev modulation from rotor-rotor interactions. The boundary layer near the vane hub and tip experiences earlier transition and separation due to interactions with the secondary flows along the shrouded endwalls. Flow visualization and Stator 2 wakes support the shear stress results.
机译:多级压缩机中的定子入口流场由于上游叶片尾流以及这些尾流如何与上游转子叶尖泄漏流相互作用而在螺距方向上变化。如果连续的叶片行数相同,则可以使用叶片计时将下游叶片定位在最佳圆周位置,以将叶片损失降至最低。本文通过测量三个翼展方向位置下游叶片上的准壁剪切应力,探索了叶片计时对吸力侧叶片边界层发展的影响。比较定子1和定子2上的边界层过渡,以强调对转子1并不存在的转子-转子相互作用的影响,但它们对定子2上的过渡做出了重大贡献。通过改变转子1尾流在转子/转子相互作用的3 / rev调制中的影响,尾流之间的距离最多可达到中跨吸入侧长度的24%。叶片毂和叶尖附近的边界层由于与沿覆盖端壁的二次流相互作用而经历了较早的过渡和分离。流量可视化和定子2唤醒支持了剪切应力结果。

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