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Self-Recirculating Casing Treatment Concept for Enhanced Compressor Performance

机译:自循环套管处理概念可增强压缩机性能

摘要

A state-of-the-art CFD code (APNASA) was employed in a computationally based investigation of the impact of casing bleed and injection on the stability and performance of a moderate speed fan rotor wherein the stalling mass flow is controlled by tip flow field breakdown. The investigation was guided by observed trends in endwall flow characteristics (e.g., increasing endwall aerodynamic blockage) as stall is approached and based on the hypothesis that application of bleed or injection can mitigate these trends. The "best" bleed and injection configurations were then combined to yield a self-recirculating casing treatment concept. The results of this investigation yielded: 1) identification of the fluid mechanisms which precipitate stall of tip critical blade rows, and 2) an approach to recirculated casing treatment which results in increased compressor stall range with minimal or no loss in efficiency. Subsequent application of this approach to a high speed transonic rotor successfully yielded significant improvements in stall range with no loss in compressor efficiency.
机译:最新的CFD代码(APNASA)用于基于计算的套管排空和注入对中速风扇转子的稳定性和性能的影响,其中失速质量流由叶尖流场控制分解。在接近失速时,以观察到的端壁流动特性趋势(例如增加的端壁空气动力学阻塞)为指导进行研究,并基于以下假设:放气或注入可以减轻这些趋势。然后将“最佳”放气和注入配置进行组合,以产生自循环式套管处理方案。该研究的结果得出:1)识别导致尖端关键叶片排失速的流体机理,以及2)再循环套管处理方法,该方法导致压缩机失速范围增加,而效率损失最小或没有损失。此方法在高速跨音速转子上的后续应用成功地实现了失速范围的显着改善,而不会降低压缩机效率。

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  • 作者

    Hathaway Michael D.;

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  • 年度 2002
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