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Effect of axisymmetric endwall contouring on the high-load low-reaction transonic compressor rotor with a substantial meridian contraction

机译:轴对称端壁轮廓对子午线收缩较大的高负荷低反应跨音速压缩机转子的影响

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For a high-load low-reaction compressor transonic rotor based on an increase in outlet axial velocity, the stage reaction is decreased by a substantial meridian contraction of the endwall. The axisymmetric endwall contouring has a deep impact on the aerodynamic performance of the rotor. Therefore, nine combinations of endwall contours with three different shapes including a linear wall, a sinusoidal wall and a symmetrical wall of the sinusoidal wall about the linear wall were firstly studied through 3D steady Reynolds Average Navier-Stokes simulations. The results show that the cases with a linear hub have the highest peak pressure ratio and the largest peak efficiency, whereas the cases, featured with a sinusoidal hub, have the widest stall margin, the largest mass flow and the lowest pressure ratio. Endwall contouring not only influences the shock structure across the flow passage but also dominates the location and intensity of separation. In addition, the effect of endwall contouring on loading distribution is also presented and the case with a sinusoidal hub is characterized by aft-loading and the other two cases have a feature of fore-loading. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:对于基于出口轴向速度增加的高负荷低反应压缩机跨音速转子,阶段反应通过端壁的子午线收缩而减小。轴对称的端壁轮廓对转子的空气动力学性能具有深远的影响。因此,首先通过3D稳态雷诺平均Navier-Stokes模拟研究了具有三种不同形状的端壁轮廓的九种组合,包括线性壁,正弦壁和围绕线性壁的正弦壁的对称壁。结果表明,具有线性毂的情况具有最高的峰值压力比和最大的峰值效率,而具有正弦形毂的情况具有最大的失速裕度,最大的质量流量和最低的压力比。端壁轮廓不仅会影响流道上的冲击结构,而且会影响分离的位置和强度。此外,还介绍了端壁轮廓对载荷分布的影响,正弦轮毂的情况以后载荷为特征,其他两种情况具有前载荷的特征。 (C)2018 Elsevier Masson SAS。版权所有。

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