首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Investigation of the instability mechanisms in a turbocharger centrifugal compressor with a vaneless diffuser by means of unsteady simulations
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Investigation of the instability mechanisms in a turbocharger centrifugal compressor with a vaneless diffuser by means of unsteady simulations

机译:通过不稳定模拟对涡轮增压器离心压缩机中不稳定机制的研究

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摘要

The stable-flow range of a compressor is predominantly limited by surge and stall. In this paper, an unsteady simulation method was employed to investigate the instability mechanisms of a high-speed turbocharger centrifugal compressor with a vaneless diffuser. In comparison with the variation in the pressure obtained by dynamic experiments on the same compressor, unsteady simulations show a great accuracy in representing the stall behaviour. The predicted frequency of the rotating stall is 22.5% of the rotor frequency, which agrees with to the value for the high-frequency short-term rotating stall obtained experimentally. By investigating the instability of the flow field, it is found that the unstable flow of the turbocharger compressor at high rotational speeds is caused by the tip clearance leakage flow and the backflow vortices' originating from the interaction of the incoming flow and the backflow in the tip region of the passages. The asymmetric volute helps to induce the occurrence of stall in certain impeller passages because it generates an asymmetric flow field. The high-pressure low-velocity area from the 180 degrees circumferential position to the 270 degrees circumferential position is dominant and strengthens the backflow at the trailing edge of the impeller, finally triggering the stall.
机译:压缩机的稳定流量范围主要受浪涌和摊位的限制。在本文中,采用了不稳定的仿真方法来研究具有无差漫射器的高速涡轮增压器离心式压缩机的不稳定机制。与通过在相同压缩机上的动态实验获得的压力的变化相比,不稳定的模拟显示出代表失速行为的良好准确性。旋转失速的预测频率是转子频率的22.5%,这与实验获得的高频短期旋转摊位的值同意。通过研究流场的不稳定性,发现涡轮增压器压缩机处于高旋转速度的不稳定流动是由尖端间隙泄漏流和源自进入流动的相互作用的回流液体引起的段落的尖端区域。不对称蜗壳有助于在某些叶轮通道中诱导失速的发生,因为它产生不对称的流场。从180度的圆周位置到270度的高压低速区域是主导的,并且在叶轮的后缘处的回流中最终引发失速。

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