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ROTATING INSTABILITY IN A CENTRIFUGAL BLOWER WITH SHROUDED IMPELLER

机译:用罩叶轮在离心式鼓风机中旋转不稳定

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Rotating instability in various types of fans, compressors, and pumps is considered as one of the symptoms of unsteady phenomena such as rotating stall or surge, and it is observed before a rotating stall as an amplitude increase in the power spectra of velocity fluctuation and/or radiated noise. In this paper, the cause of rotating instability in a centrifugal blower with a shrouded impeller is investigated through both experiments and numerical simulations. Experimental results show that the rotating instability may be attributed to unsteady vortices rotating along the impeller periphery and that a discrete noise component induced by the rotating instability is mainly caused by the interaction between unsteady vortices and the impeller discharge flow. A significant amplitude increase within a frequency band at almost half the blade passing frequency is found to be caused by an irregular change in the vortex rotating speed as well as by an irregular time interval in the train of generated vortices. In the numerical study, the structure and circumferential characteristics of the rotating vortices are investigated by a visualization technique using Q-definition. Circumferential characteristics of the rotating vortices may be largely influenced by the steady characteristics of the impeller discharge flow field, which are determined by the geometric configuration of the impeller and the scroll casing.
机译:旋转在各种类型的风扇,压缩机的不稳定,和泵被认为是的非定常现象的症状,如旋转失速或喘振之一,它是一个旋转失速作为速度变动和的功率谱的振幅增加之前观察到的/或噪声辐射。在本文中,在离心式鼓风机具有叶轮笼罩旋转不稳定的原因是通过这两个实验和数值模拟研究。实验结果表明,该旋转不稳定性可能是由于不稳定的涡流沿叶轮周边旋转,并且通过旋转的不稳定性引起的离散的噪声分量主要是由非稳态涡流和叶轮排出流之间的相互作用。在几乎一半的叶片通过频率的频带内的振幅显著增加被发现通过在涡流转速以及通过在产生的涡旋的列车的不规则时间间隔的不规则变化所导致。在数值研究中,结构和旋转涡旋的圆周特性通过使用Q-定义一个可视化技术研究。旋转涡流的圆周特性可以由叶轮排出的流场的稳定特性,这是由所述叶轮的几何构型和涡壳确定在很大程度上影响。

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