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The influence of diversified forward sweep heights on operating range and performance of an ultra-high-load low-reaction transonic compressor rotor

机译:前掠高度的变化对超高负荷低反应跨音速压缩机转子的工作范围和性能的影响

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摘要

To provide a guideline for the optimal selection of forward sweep height (FSH) in terms of operating range and performance, numerical simulations are utilized to investigate the effects of different FSHs on a new-type low-reaction ultra-high-load compressor rotor. The results illustrate that it is an effective measure to amplify stall margin improvement (SMI) by adequately increasing FSH (no more than 50% span). Nonetheless, when FSH exceeds 50% span, there appears a drop in SMI. Both total pressure ratio (TPR) and peak efficiency (PE) demonstrate a continual downward trend with increasing FSH. It is noteworthy that compared with the unswept rotor, forward sweep enhances stall margin in all rotors but reduces PE and the corresponding TPR when FSH is more than 50% span. There exists an optimal FSH (50% span) that could maximize SMI (15.12%) and simultaneously achieve a negligible performance change at PE condition. A deep insight into the flow field reveals that as FSH increases, the shock gradually migrates downstream and the separation bubble on suction side shrinks at PE point and shortens in streamwise direction near stall. If FSH continually increases above 50% span, SMI brought by the change in shock structure and tip leakage flow will drop.
机译:为了在操作范围和性能方面提供最佳选择前掠高度(FSH)的指南,数值模拟用于研究不同FSH对新型低反应超高负荷压缩机转子的影响。结果表明,这是通过充分增加FSH(跨度不超过50%)来扩大摊位边际收益(SMI)的有效措施。但是,当FSH跨度超过50%时,SMI会下降。随着FSH的增加,总压力比(TPR)和峰值效率(PE)均显示出持续下降的趋势。值得注意的是,与未扫掠的转子相比,当FSH跨度超过50%时,前掠会提高所有转子的失速裕度,但会降低PE和相应的TPR。有一个最佳的FSH(跨度为50%)可以最大化SMI(15.12%),同时在PE条件下实现可忽略不计的性能变化。对流场的深入了解表明,随着FSH的增加,冲击逐渐向下游迁移,并且吸力侧的分离气泡在PE点处收缩,并在失速附近沿流向缩短。如果FSH持续增加到超过50%的跨度,则由冲击结构和尖端泄漏流量的变化带来的SMI将下降。

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