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EXPERIMENTAL INVESTIGATION OF AN ASPIRATED FAN STAGE

机译:拟风机阶段的实验研究

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This paper addresses the use of viscous flow control by suction to improve compressor stage performance. The pressure ratio can be significantly increased by controlling the development of the airfoil and endwall boundary layers. This concept has been validated through an aspirated fan stage experiment performed in the MIT Blowdown Compressor Facility. The fan stage was designed to produce a pressure ratio of 1.6 at a throughflow adi-abatic efficiency of 89% at a corrected rotor tip speed of 750ft/s (229m/s). Aspiration was applied to the airfoil surface of both the rotor and stator at a design suction rate of 0.5% of the inlet flow. Aspiration was also used on the endwall boundary layers. The measured performance of the stage agrees well with the design intent and predicted performance. An incompressible, vortex shedding model calibrated to the experimental data shows that the vortex shedding induces radial flows that redistribute flow properties in the spanwise direction.
机译:本文介绍了通过抽吸使用粘性流量控制来改善压缩机级性能的方法。通过控制翼型和端壁边界层的发展,可以显着提高压力比。该概念已通过MIT排污压缩机工厂中进行的抽气扇段试验得到了验证。风扇级设计为在校正后的叶尖速度为750ft / s(229m / s)时,以89%的通流绝热效率产生1.6的压力比。吸气被施加到转子和定子的翼型表面,设计吸气率为进气流量的0.5%。吸气也用于端壁边界层。该阶段的实测性能与设计意图和预测性能非常吻合。校准到实验数据的不可压缩涡旋脱落模型表明,涡旋脱落会引起径向流,从而沿展向方向重新分配流动特性。

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