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Influences of Groove Depth on the Coupling of Small Tip Clearance and Circumferential Grooves

机译:沟槽深度对小尖端间隙和周向槽耦合的影响

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Coupling of small tip clearance and circumferential grooves of axial-flow compressors significantly improves the stability margin, as well as pressure ratio and efficiency. Different groove depth under coupling of small tip clearance and circumferential grooves has been designed for the isolate subsonic NPU-rotor based. Moreover, influences and mechanism of groove depth on the coupling of small tip clearance and circumferential grooves have been further studied by utilizing a numerical simulation calculation method. The results showed that the role of casing treatment reduced driving force of generating leakage action, postponed negative effects intersecting incoming flow with tip clearance flow and improved flow field of tip passages by sucking leakage flow into the groove.
机译:轴流压缩机小尖端间隙和周向槽的耦合显着提高了稳定性余量,以及压力比和效率。在小尖端间隙和周向槽的耦合下的不同凹槽深度已经专为基于隔离子源NPU转子而设计的。此外,通过利用数值模拟计算方法进一步研究了沟槽深度对小尖端间隙和周向沟耦合的影响和机制。结果表明,壳体处理的作用降低了产生泄漏动作的驱动力,通过将漏流流入凹槽中的尖端间隙和改进的尖端通道的改进的流动场与尖端间隙的引入流动交叉的负面影响。

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