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Numerical study on unsteadiness of tip clearance flow and performance prediction of axial compressor

机译:叶端间隙流动不稳定的数值研究及轴流压气机性能预测

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Numerical calculations were performed to investigate unsteady features of tip clearance leakage flow in an axial compressor. The first stage rotor of a low speed axial compressor with a large tip clearance was examined. It was confirmed that the numerically calculated performance data were in good agreement with the experimentally measured performance data. Using frequency analysis, the flow characteristic near the casing induced by tip clearance leakage flow was found to be not associated with the rotating speed of the rotor. This characteristic is called rotating instability or self-induced unsteadiness. We found that the circumferential length scale of the rotating instability of the compressor was longer than a pitch of a blade passage; therefore, a multi-blade passage was adopted to study the flow structure more precisely. The flow characteristic was described by the frequency, the circumferential length, and the phase velocity, and was changed by operating points toward stall. The behavior of the flow was characterized by circumferentially traveling waves. Hence, the mechanism governing the development of the unsteady feature was further examined in terms of the rotating wave pattern of the pressure distribution. Furthermore, the unsteady feature of the tip clearance leakage flow affected the prediction of compressor performance by altering blockage, flow turning, and loss near the casing.
机译:进行了数值计算,以研究轴向压缩机中叶尖间隙泄漏流的不稳定特征。检查了具有大的叶尖间隙的低速轴向压缩机的第一级转子。可以确认,数值计算的性能数据与实验测量的性能数据非常吻合。使用频率分析,发现由叶尖间隙泄漏流引起的壳体附近的流动特性与转子的转速无关。这种特性称为旋转不稳定性或自生不稳定性。我们发现,压缩机旋转不稳定性的周向长度尺度比叶片通道的螺距长。因此,采用了多叶片通道来更精确地研究流动结构。流动特性由频率,周长和相速度描述,并由朝失速的工作点改变。流动的行为以周向传播波为特征。因此,根据压力分布的旋转波型进一步研究了控制非定常特征发展的机制。此外,叶尖间隙泄漏流的不稳定特征通过改变阻塞,流转向和套管附近的损失影响了对压缩机性能的预测。

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