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Unsteady Simulation Of An Axial Compressor Stage With Casing And Blade Passive Treatments

机译:带有壳体和叶片被动处理的轴流压气机级的非定常模拟。

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This paper deals with the numerical simulation of technologies to increase the compressor performances. The objective is to extend the stable operating range of an axial compressor stage using passive control devices located in the tip region. First, the behavior of the tip leakage flow is investigated in the compressor without control. The simulation shows an increase in the interaction between the tip leakage flow and the main flow when the mass flow is reduced, a phenomenon responsible for the development of a large flow blockage region at the rotor leading edge. A separation of the rotor suction side boundary layer is also observed at near stall conditions. Then, two approaches are tested in order to control these, flows in the tip region. The first one is a casing treatment with nonaxisymmetric slots. The method showed a good ability to control the tip leakage flow but failed to reduce the boundary layer separation on the suction side. However, an increase in the operability was observed but with a penalty for the efficiency. The second approach is a blade treatment that consists of a longitudinal groove built in the tip of each rotor blade. The simulation pointed out that the device is able to control partially all the critical flows with no penalty for the efficiency. Finally, some recommendations forrnthe design of passive treatments are presented.
机译:本文对提高压缩机性能的技术进行了数值模拟。目的是通过使用位于尖端区域中的无源控制装置来扩展轴向压缩机级的稳定工作范围。首先,在无控制的情况下研究了尖端泄漏流的行为。仿真表明,当质量流量减小时,尖端泄漏流与主流之间的相互作用会增加,这种现象是在转子前缘处形成大的流动阻塞区域的原因。在接近失速条件下也观察到转子吸入侧边界层的分离。然后,测试了两种方法以控制这些在尖端区域中的流动。第一个是具有非轴对称槽的套管处理。该方法显示出良好的控制尖端泄漏流的能力,但是未能减小吸入侧的边界层分离。然而,观察到可操作性增加,但是效率受到损害。第二种方法是叶片处理,该叶片处理包括在每个转子叶片的尖端内构建的纵向凹槽。仿真指出,该设备能够部分控制所有关键流量,而不会影响效率。最后,提出了一些关于被动治疗设计的建议。

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