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REDUCTION OF UNSTEADY STATOR-ROTOR INTERACTION USING TRAILING EDGE BLOWING

机译:利用尾缘吹动减少非定常转子间的相互作用

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An aeroacoustic investigation was performed to assess the effects of adding mass flow at the trailing edges of stators upstream of an aircraft engine simulator. By using trailing edge blowing to minimize the shed wakes of the stators, the flow into the rotor was made more uniform, hence reducing the unsteady stator-rotor interaction. In these experiments, a reduced number of stators (four) was used in a 1/14 scale model inlet which was coupled to a 4·1 in (10·4 cm) turbofan engine simulator. Steady state measurements of the aerodynamic flow field and acoustic far field were made in order to evaluate the aeroacoustic performance at three simulator speeds: 30k, 50k, and 70k r.p.m. The lowest test speed (30k r.p.m.) showed a noise reduction as large as 8·9 dB in the blade passing tone. At 50k and 70k r.p.m., the reduction in blade passing tone was 5·5 and 2·6 dB respectively. In addition, trailing edge blowing reduced the overall sound pressure level in every case. Aerodynamic measurements showed that fan face distortion was significantly reduced due to trailing edge blowing. The addition of trailing edge blowing from the four upstream stators did not change the operating point of the fan, and the mass flow added by the blowing was less than 1% of the fan mass flow rate. The results of these experiments clearly demonstrate that blowing from the trailing edges of the stators is effective in reducing unsteady stator-rotor interaction and the subsequent forward radiated noise.
机译:进行了航空声学研究,以评估在飞机发动机模拟器上游的定子后缘增加质量流量的影响。通过使用后缘吹气来最小化定子的脱落流,可以使流入转子的气流更加均匀,从而减少定子与转子之间不稳定的相互作用。在这些实验中,在比例为1/14的模型进气口中使用了数量减少了的定子(四个),该进气口与4·1英寸(10·4厘米)涡轮风扇发动机模拟器相连。为了评估三种模拟器速度(30k,50k和70k r.p.m)的空气声学性能,对空气动力学流场和声学远场进行了稳态测量。最低的测试速度(30k r.p.m.)显示出叶片通过音的降噪幅度高达8·9 dB。在50k和70k r.p.m.时,叶片通过音的降低分别为5·5和2·6 dB。此外,后缘吹气分别降低了总体声压级。空气动力学测量表明,由于后缘吹气,风扇面变形显着降低。从四个上游定子的后缘吹气的添加不会改变风扇的工作点,并且通过吹气添加的质量流小于风扇质量流率的1%。这些实验的结果清楚地表明,从定子后缘吹气可有效减少定子-转子之间的不稳定相互作用以及随后产生的正向辐射噪声。

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