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Stability Improvement of a High-Pressure Ratio Centrifugal Compressor by Flow Injection

机译:流动喷射高压比离心式压缩机的稳定性改进

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High-pressure ratio centrifugal compressors are required in modern turboshaft engines with the requirements of a high power-to-weight ratio and low fuel consumption. The reduction of the stable flow range is one of the crucial issues when increasing the compressor pressure ratio. As a widespread active flow control method, a steady tip injection was applied to extend the stable flow range and improve the stability of a high-pressure ratio centrifugal compressor with a three-dimensional numerical simulation. By the steady simulation method, this paper investigates the influences of different parameters, such as the injection velocity, injection yaw angle, injection position, and injection tube diameter on the pressure ratio and efficiency and stability of the centrifugal compressor. Further, the research is conducted by comparing a datum compressor and an injection configuration compressor with the relative optimal parameters via an unsteady simulation calculation. The results show that the stable flow range of the compressor is successfully increased from 8.1% to 13.4% when using tip air injection. The analysis of the flow field at the region of the leading edge demonstrates that the injection can decrease the passage shock intensity and reduce the load in the vicinity of the tip clearance. The tip leakage vortex, near the shroud of the leading edge, can also be suppressed. The decreased incidence indicates that the air injection can weaken the flow separation in the impeller, thereby improving the stability of the compressor. (c) 2020 American Society of Civil Engineers.
机译:现代涡轮轴承发动机中需要高压比离心式压缩机,具有高功率重量比和低燃料消耗的要求。在增加压缩机压力比时,稳定流量范围的减小是一个至关重要的问题。作为广泛的主动流量控制方法,施加稳定的尖端注射以延长稳定的流量范围,提高高压比离心压缩机的稳定性,具有三维数值模拟。通过稳定的仿真方法,本文研究了不同参数的影响,例如注射速度,注射横摆角,注射位置和注射管直径对离心式压缩机的压力比和效率和稳定性。此外,通过将基准压缩机和注入配置压缩机与相对最佳参数进行比较,通过不稳定的模拟计算进行研究。结果表明,当使用尖端空气喷射时,压缩机的稳定流量范围成功从8.1%增加到13.4%。前沿区域处的流场的分析表明,注射可以降低通道冲击强度并减少尖端间隙附近的负载。也可以抑制尖端泄漏涡流,靠近前缘的护罩,也可以抑制。降低的入射表明,空气喷射可以削弱叶轮中的流动分离,从而提高压缩机的稳定性。 (c)2020年美国土木工程师协会。

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