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Mechanism study of performance enhancement in a subsonic axial flow compressor with recirculating casing treatment

机译:亚音速轴流压气机循环壳体处理提高性能的机理研究

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The improvements in both compressor efficiency and stability have been observed in a subsonic axial flow compressor with recirculating casing treatment. The study aims to understand the underlying flow mechanisms of the beneficial effect on the compressor efficiency of recirculating casing treatment. The recirculating casing treatment was investigated experimentally and numerically. In the experiment, static pressure fluctuations over the rotor tip were measured with fast-response pressure transducers. Whole-passage time-accurate simulations were also implemented to help in understanding the flow details. The unsteadiness of double-leakage flow and its effect on the loss generated at the rotor tip were discussed in detail for the solid casing. The effect of recirculating casing treatment on the double-leakage flow related loss was subsequently investigated. The results indicate that the double leakage flow is a main loss source in the rotor tip region. The double-leakage flow is completely unsteady, which induces a cyclical fluctuation of the amount of loss generated in the rotor tip region for the solid casing. With the recirculating casing treatment installed, the high-energy jet created in recirculating loops changes the unsteady characteristics of double-leakage flow by getting it diffused over the rotor tip gap along the chordwise direction, which results in the loss fluctuation that is dominated by the high-energy jet rather than the unsteadiness of double-leakage flow. The double-leakage flow is also pushed downstream by the jet and the amount is reduced when it passes through the recirculating loops. The effect of recirculating casing treatment on the double-leakage flow is primarily responsible for the improvement in the compressor efficiency.
机译:在具有再循环壳体处理的亚音速轴流压缩机中,已经观察到压缩机效率和稳定性的提高。该研究旨在了解潜在的流动机理,该效应对循环套管处理的压缩机效率产生有益的影响。对再循环套管的处理进行了实验和数值研究。在实验中,使用快速响应的压力传感器测量了转子尖端的静压力波动。还实施了全通道时间精确的模拟,以帮助理解流程细节。对于固体壳体,详细讨论了双泄漏流的不稳定性及其对转子尖端产生的损失的影响。随后研究了再循环套管处理对与双漏流有关的损失的影响。结果表明,二次泄漏流是转子叶尖区域的主要损失源。双重泄漏流是完全不稳定的,这引起了在用于固体壳体的转子尖端区域中产生的损耗量的周期性波动。安装了循环套管处理后,在循环回路中产生的高能射流通过使双泄漏流沿弦向扩散在转子尖端间隙上,从而改变了双泄漏流的不稳定特性,这导致了损失的波动主要由高能射流而不是双重泄漏流的不稳定。双重泄漏流也被射流推向下游,当其通过再循环回路时,其流量会减少。循环套管处理对双泄漏流的影响主要是压缩机效率的提高。

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