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Prestall Disturbances and Stall Inception for an Eccentric Low-Speed Axial Compressor With Inlet Swirl

机译:Prestall扰动和偏心低速轴向压缩机的抗动件和入口旋转旋转

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摘要

Owing to the manufacturing and assembly error or the fatigue of long-time operation, nonaxisymmetric tip clearance is actually a common phenomenon in compressors. It is also well accepted that tip leakage flow, associated with tip clearance size and loading, has a strong influence on the performance and stall inception of compressors. The work of this paper, based on an eccentric compressor with/without inlet swirl distortion, is aimed at strengthening the understanding of stall inception for a real geometry compressor experimentally. Results indicate that rotor tip blockage and flow unsteadiness vary evidently around the circumference. For this compressor, the maximum tip flow unsteadiness and blockage happens at the location near the minimum clearance under the condition of clean inlet flow. Before the occurrence of stall inception, disturbances arise and vanish intermittently within the region of high unsteadiness. However, it fails to rotate due to the inhibition of the low unsteadiness region. Once the most robust region is no longer able to suppress disturbances, stability finally breaks down and stall inception generates. After exerting inlet paired swirl, unsteadiness within the region of positive pre-swirl decreases significantly and the maximum unsteadiness location shifts, while the increase for the region with negative preswirl is nearly negligible. As a result, stall margin of the compressor is improved.
机译:由于制造和装配误差或长时间操作的疲劳,非开发尖端间隙实际上是压缩机中的常见现象。它也很好地接受了与尖端间隙尺寸和负载相关的尖端泄漏流,对压缩机的性能和销钉初始有很大影响。本文的工作基于具有/不带/不带入口涡流的偏心压缩机,旨在通过实验地加强对真实几何压缩机的Stall初始化的理解。结果表明,转子尖端阻塞和流动不稳定性在圆周周围显然变化。对于该压缩机,最大尖端流动不稳定和阻塞在清洁入口流动条件下的最小间隙附近的位置。在出现失速初始化的情况下,在高不稳定的区域内发生干扰并间歇地消失。然而,由于抑制低不稳定区域,它不能旋转。一旦最强大的区域不再能够抑制干扰,稳定性最终会破坏并失速成立产生。在施加入口配对涡旋后,正旋转区域内的不稳定性显着降低,并且最大的不稳定位置偏移,而具有负面先前漩涡的区域的增加几乎可以忽略不计。结果,改善了压缩机的失速余量。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2021年第6期|061021.1-061021.7|共7页
  • 作者单位

    College of Energy and Power Engineering Nanjing University of Aeronautics and Astronautics Nanjing Jiangsu 210016 China;

    College of Energy and Power Engineering Nanjing University of Aeronautics and Astronautics Nanjing Jiangsu 210016 China;

    College of Energy and Power Engineering Nanjing University of Aeronautics and Astronautics Nanjing Jiangsu 210016 China;

    College of Energy and Power Engineering Nanjing University of Aeronautics and Astronautics Nanjing Jiangsu 210016 China;

    College of Energy and Power Engineering Nanjing University of Aeronautics and Astronautics Nanjing Jiangsu 210016 China;

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