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Effect of wind tunnel acoustic modes on linear oscillating cascade aerodynamics

机译:风洞声模对线性振荡叶栅空气动力学的影响

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摘要

The aerodynamics of a biconvex airfoil cascade oscillating in torsion is investigated using the unsteady aerodynamic influence coefficient technique. For subsonic flow and reduced frequencies as large as 0.9, airfoil surface unsteady pressures resulting from oscillation of one of the airfoils are measured using flush-mounted high-frequency-response pressure transducers. The influence coefficient data are examined in detail and then used to predict the unsteady aerodynamics of a cascade oscillating at various interblade phase angles. These results are correlated with experimental data obtained in the traveling-wave mode of oscillation and linearized analysis predictions. It is found that the unsteady pressure disturbances created by an oscillating airfoil excite wind tunnel acoustic modes which have detrimental effects on the experimental data. Acoustic treatment is proposed to rectify this problem.
机译:使用非定常空气动力影响系数技术研究了双凸翼型叶栅在扭转中的空气动力学特性。对于亚音速流和降低的频率(最大为0.9),使用齐平安装的高频响应压力传感器测量由其中一个翼型的振动引起的翼型表面非恒定压力。对影响系数数据进行了详细检查,然后将其用于预测在各种叶片间相角处振荡的叶栅的非稳态空气动力学。这些结果与在行波振荡模式和线性化分析预测中获得的实验数据相关。结果发现,由翼型振动产生的非稳态压力扰动激发了风洞的声模,对实验数据产生了不利影响。为了解决这个问题,提出了声学处理。

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