首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >NUMERICAL INVESTIGATION ON THE EFFECTS OF CIRCUMFERENTIAL COVERAGE OF INJECTION IN ATRANSONIC COMPRESSOR WITH DISCRETE TIP INJECTION
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NUMERICAL INVESTIGATION ON THE EFFECTS OF CIRCUMFERENTIAL COVERAGE OF INJECTION IN ATRANSONIC COMPRESSOR WITH DISCRETE TIP INJECTION

机译:离散尖端注射的无声压缩机循环注射覆盖率影响的数值研究

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Discrete tip injection upstream of the rotor tip is an effective technique to extend stability margin for a compressor system in an aeroengine. The current study investigates the effects of injectors' circumferential coverage on compressor performance and stability using time-accurate three-dimensional numerical simulations for multi passages in a transonic compressor. The percentage of circumferential coverage for all the sixinjectors ranges from 6% to 87% for the five investigated configurations. Results indicate that circumferential coverage of tip injection can greatly affect compressor stability and total pressure ratio, but has little influence on adiabatic efficiency. The improvement of compressor total pressure ratio is linearly related with the increasing circumferential coverage. The unsteady flow fields show that there exists a non-ignorable time lag of the injection effects between the passage inlet and outlet, and blade tip loading will not decline until the injected flow reaches the passage outlet. Stability improves sharply with the increasing circumferential coverage when the coverage is less than 27%, but increases flatly for the rest. It is proven that the injection efficiency which is a measurement of averaged blockage decrement in the injected region is an effective guideline to predict the stability improvement.
机译:转子尖端上游的离散尖端喷射是一种有效的技术,可以延长航空发动机中压缩机系统的稳定性裕度。当前的研究使用跨音速压缩机多通道的时间精确的三维数值模拟研究了喷射器周向覆盖范围对压缩机性能和稳定性的影响。对于五个调查配置,所有六个喷射器的圆周覆盖百分比范围从6%到87%。结果表明,尖端喷射的周向覆盖范围可以极大地影响压缩机的稳定性和总压比,但对绝热效率的影响很小。压缩机总压比的提高与周向覆盖率的增加呈线性关系。不稳定的流场表明,在通道入口和出口之间存在不可忽略的喷射效果时滞,并且直到喷射的流量到达通道出口时,叶尖载荷才会下降。当覆盖率小于27%时,稳定性会随着周向覆盖率的增加而急剧提高,而其余部分则保持平稳增长。事实证明,作为在注入区域内平均堵塞减少量的度量的注入效率是预测稳定性改善的有效指南。

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