一种抑制双反同转子离心式压缩机失稳的新型实验控制方法

Cheikh Brahim Abed, V. Nguyen, S. Khelladi, M. Deligant, A. Danlos, F. Bakir
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引用次数: 0

摘要

在涡轮机器中使用反向旋转转子可以通过减小尺寸和重量来提高性能,特别是与多级配置相比。本研究旨在展示反向旋转转子的另一个优点:基于主动控制方法,将离心压缩机的工作范围扩展到极低流量。该方法在两种不同的反向旋转构型上进行了实验。主动控制方法的原理是通过独立调节各转子的转速,将不稳定现象推回。实验结果表明,在固定下游转子转速的同时降低上游转子转速,可以使不稳定现象向较低的质量流量方向发展,同时降低压升和效率。采用同向旋转模式,进一步推动稳定区域向低质量流量,允许工作范围的显着扩展。实验结果表明,当采用该控制方法时,两种反向旋转离心压缩机的图宽度在研究范围内向较低的质量流量方向偏移了约50%。当上游转子转速绝对值在下游转子转速的48% ~ 61%范围内时,可以实现这一目标。
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A novel experimental control method to suppress instability in a centrifugal compressor with two counter and co-rotating rotors
The use of a counter-rotating rotor in turbomachines can be a solution to improve performances by allowing reduction in size and weight, especially compared to multistage configuration. The present study aims are to demonstrate another advantage of the counter-rotating rotors: their application to expand the operating range of centrifugal compressors toward extremely low flow rates based on an active control method. This method was performed on two different counter-rotating configurations. The principle of the active control method is to adjust independently the rotation speed of each rotor to push back the instability appearance. Experimental results show that reducing the rotation speed of the upstream-rotor while fixing the speed of the downstream rotor can push the instability phenomenon toward a lower mass flow rate while decreasing the pressure rise and efficiency. Co-rotating mode is applied to push further the stable region toward low mass flow rates allowing a significant extension of the operating range. The experimental results reveal that the map width is shifted by about 50% over the studied range toward a lower mass flow rate for both counter-rotating centrifugal compressors when using the control method. This can be achieved when the absolute value of the upstream-rotor speed is within the range of 48%–61% of the rotational speed of the downstream rotor.
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来源期刊
CiteScore
3.30
自引率
5.90%
发文量
114
审稿时长
5.4 months
期刊介绍: The Journal of Power and Energy, Part A of the Proceedings of the Institution of Mechanical Engineers, is dedicated to publishing peer-reviewed papers of high scientific quality on all aspects of the technology of energy conversion systems.
期刊最新文献
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