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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Experimental identification of rotating instability of an axial fan with shrouded rotor
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Experimental identification of rotating instability of an axial fan with shrouded rotor

机译:带罩转子轴流风机旋转不稳定性的实验辨识

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摘要

The rotating instability phenomenon is investigated experimentally on a laboratory low-speed axial fan. Unsteady pressure measurements are performed close to the rotor leading edge, in the far-field in the upstream-duct section, and within the rotating frame by using Kulite sensors near the blade tip. As reference, the occurrence of rotating instability is proven for a rotor configuration with large clearance size. Existing explanations assume that rotating instability is induced by the tip clearance vortex. Following these models, the characteristic spectral and modal signatures of rotating instability are generated by the circumferentially coupled unsteady vortex systems within the individual blade passages. However, some early findings on a shrouded rotor setup and a study on an annular cascade without clearance have raised questions about the validity of the existing theories. To answer these questions, a second configuration is investigated using the identical rotor in a shrouded version. Here, a shrouding band covers the blade tips over the whole circumference. By using a comprehensive sensor arrangement in a wide variation of operating conditions, the existence of spectral and modal rotating instability signatures is proven on the shrouded-rotor configuration, as well. In this case, the tip clearance vortex system and, respectively, the leakage flow are suppressed. The present study underlines that novel explanations are required to describe the physical mechanism that generates rotating instability.
机译:在实验室低速轴流风扇上通过实验研究了旋转不稳定性现象。通过在叶片尖端附近使用Kulite传感器,在靠近转子前缘,在上游管道区段的远场中以及在旋转框架内进行非定常压力测量。作为参考,对于具有大间隙尺寸的转子配置,已证明发生旋转不稳定性。现有解释假定旋转不稳定性是由尖端间隙涡旋引起的。根据这些模型,旋转不稳定性的特征光谱和模态特征是由各个叶片通道内周向耦合的非定常涡旋系统产生的。但是,关于带罩转子装置的一些早期发现以及对没有间隙的环形叶栅的研究提出了有关现有理论的有效性的疑问。为了回答这些问题,我们使用带罩的相同转子研究了第二种配置。在此,覆盖带在整个圆周上覆盖叶片尖端。通过在广泛的工作条件变化中使用全面的传感器装置,也证明了罩转子配置中存在频谱和模态旋转不稳定性特征。在这种情况下,抑制了尖端间隙涡流系统和泄漏流。本研究强调需要新颖的解释来描述产生旋转不稳定性的物理机制。

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