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Theory of Compressor Stability Enhancement Using Novel Casing Treatment, Part Ⅰ: Methodology

机译:新型套管处理提高压缩机稳定性的理论,第一部分:方法论

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摘要

This paper proposes a novel casing treatment, designated a stall precursor-suppressed casing treatment It is designed to suppress stall precursors to realize stall margin enhancement in turbomachinery. This paper first presents a physical and mathematical model to describe the casing treatment configuration as a wall boundary condition and then establishes the stability equation with its effect. The sensitivity of stall inception to different boundary conditions is considered numerically for both subsonic and transonic axial flow fan/compressors. One important finding from this numerical prediction and analysis is that such a casing treatment can be used to change stall inception even when using a casing treatment configuration with low open area ratio. Thus, a reduction of momentum loss due to recirculating flow can be realized, in comparison with a conventional recessed casing treatment with more than 50 % open area ratio. It is thus theoretically possible to design an advanced casing treatment to affect the evolution of stall precursors and finally change stall inception without significantly changing the efficiency of the fan and compressors.
机译:本文提出了一种新颖的套管处理方法,称为失速前兆抑制套管处理。它旨在抑制失速前兆,从而实现涡轮机械的失速裕度提高。本文首先提出了一个物理和数学模型,将套管处理配置描述为墙边界条件,然后建立具有其效果的稳定性方程。亚音速和跨音速轴流风机/压缩机都在数值上考虑了失速开始对不同边界条件的敏感性。从该数值预测和分析中获得的一个重要发现是,即使使用低开口率的套管处理结构,也可以使用这种套管处理来改变失速开始。因此,与具有大于50%的开口面积比的常规的凹入式套管处理相比,可以减少由于再循环流引起的动量损失。因此,从理论上讲,有可能设计一种先进的套管处理方法来影响失速前兆的发展,并最终改变失速开始时间,而不会显着改变风扇和压缩机的效率。

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  • 来源
    《Journal of propulsion and power》 |2014年第5期|1224-1235|共12页
  • 作者单位

    Beijing University of Aeronautics and Astronautics, 100191 Beijing, People's Republic of China;

    Beijing University of Aeronautics and Astronautics, 100191 Beijing, People's Republic of China;

    Beijing University of Aeronautics and Astronautics, 100191 Beijing, People's Republic of China;

    Beijing University of Aeronautics and Astronautics, 100191 Beijing, People's Republic of China;

    Beijing University of Aeronautics and Astronautics, 100191 Beijing, People's Republic of China;

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