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Multi-passage time-resolved CFD analysis of rotor tip stall inception and passive control in a highly-loaded axial compressor

机译:高负荷轴流压气机转子尖端失速开始和被动控制的多通道时间分辨CFD分析

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Casing treatment is a known design technique for improving the stability of operation of high-speed aircraft engines.Although many different casing treatment concepts have been investigated in the literature, widespread consensus ona standard design for axial compressors is not established.One reason for this could be the component efficiency penalty caused by some casing treatments. The time dependentsimulation in this work show that the flow structure breakdown follows the formation of reversed flow at blade leading edge. This paper aims to achieve an increase in the rotor operating range by using the recirculation type casing treatment. Unlike other known casing treatments like an axisymmetric square groove, higher improvement in the stall margin is expected by generating flow. The steady state numerical simulations have shown a useful extensionof the rotor operating range by using this recirculation type treatment, without the adiabatic efficiency penalty of othertreatments, reported in previous work.
机译:机壳处理是提高高速飞机发动机运行稳定性的一种已知设计技术。\ r \ n尽管文献中已经研究了许多不同的机壳处理概念,但对于轴流式压缩机的标准设计尚无广泛共识\ r \ n一个原因可能是某些套管处理导致的组件效率损失。这项工作中与时间有关的模拟表明,流动结构的破坏遵循叶片前缘处反向流动的形成。本文旨在通过使用再循环式套管处理来增加转子的工作范围。与其他已知的套管处理(如轴对称方槽)不同,通过产生流量可以期望在失速裕度方面有更高的改善。稳态数值模拟表明,通过使用这种再循环类型的处理,转子工作范围得到了有效的扩展,而没有其他处理中的绝热效率损失,这在先前的工作中已有报道。

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