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Reduction of unsteady stator-rotor interaction using trailing edge blowing

机译:通过后缘吹气减少定转子不稳固的相互作用

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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 rpm. ^The lowest test speed (30k rpm) showed a noise reduction as large as 8.9 dB in the blade passing tone. ^At 50k and 70k rpm, the reduction in blade passing tone was 5.5 dB 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 percent 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. ^(Author)
机译:进行气流调查,以评估在飞机发动机模拟器上游的定子尾部添加质量流量的效果。 ^通过使用后缘吹来以最小化定子的棚锯,进入转子的流量更均匀,因此减少了不稳定的定子转子相互作用。 ^在这些实验中,在1/14级模型入口中使用了减少数量的定子(四),其耦合到4.1英寸(10.4cm)的涡轮机引擎模拟器。 ^采用空气动力流场和声学远场的稳态测量,以便在三种模拟器速度下评估空气声性能:30k,50k和70krpm。 ^最低的测试速度(30k rpm)显示了叶片通过音调的噪声减少,大约为8.9 dB。 ^在50k和70k rpm时,叶片通过的减少分别为5.5dB和2.6 dB。 ^此外,拖尾边缘吹降低了各种情况下的整体声压级。 ^空气动力学测量表明,由于后缘吹延,风扇面部变形显着降低。 ^从四个上游定子中吹的后缘未改变风扇的操作点,并且吹割的质量流量小于风扇质量流量的1%。 ^这些实验的结果清楚地表明,从定子的后缘吹吹吹延对于减少不稳定的定子转子相互作用和随后的前向辐射噪声有效。 ^(作者)

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