Computational Investigation of Unsteady Effect of Axial Spacing on the Performance in a Contra-rotating Axial Compressor

X. Mao, Bo Liu
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Abstract

Unsteady numerical simulations are conducted to investigate the unsteady effects of axial spacing on the performance of a contra-rotating axial compressor. The results show that the adiabatic efficiency decreases with increasing axial gaps, and the stage efficiency is dominant by rotor2. The variation of aerodynamic force is different for the two rotors. In addition, the variation of the fluctuating phenomenon also shows the different behavior for the two rotors as the axial spacing increased. The perturbation form in the tip region varies for different axial gaps. For the axial gap of 60% a spiral focus is generated, and the perturbation form turns to be a star node at the axial spacing of 40%. The impact of the stable spiral focus on the flow field results in the reduction of the efficiency for a larger axial spacing.
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轴向间距对对转轴流压气机性能非定常影响的计算研究
通过非定常数值模拟研究了轴向间距对对旋转轴向压气机性能的非定常影响。结果表明:绝热效率随轴向间隙的增大而降低,二级效率以转子为主;两种旋翼的气动力变化是不同的。此外,波动现象的变化也显示了两转子随轴向间距增加的不同行为。在不同的轴向间隙中,尖端区域的微扰形式是不同的。当轴向间距为60%时,产生螺旋聚焦,当轴向间距为40%时,微扰形式变为星形节点。当轴向间距较大时,稳定螺旋聚焦对流场的影响会导致效率降低。
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