Unsteady Flow in the Vaned Diffuser of a Low Specific Speed Centrifugal Pump With an Unshrouded Impeller

Asuma Ichinose, Tomoki Takeda, K. Miyagawa, Y. Ogawa, H. Negishi, Kazuki Niiyama
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引用次数: 1

Abstract

The unsteady internal flow in a low specific speed centrifugal pump was experimentally and numerically investigated. Unshrouded impellers enable high head designs but on the other hand, they exhibit complicated internal flow and an efficiency decline compared to shrouded impellers. Furthermore, the complicated impeller outlet flow induces unsteady internal flow in the vaned diffuser. Therefore, a detailed investigation of the internal flow is required in order to increase the efficiency of these low specific speed centrifugal pumps. The aims of this paper are to clarify the loss mechanisms in the impeller and to investigate the effect of impeller outlet flow to the diffuser internal flow at the design point. The detailed pump internal flow is investigated using unsteady computation, which enables the computation of the 3D flow pattern. The reversed flow and the secondary flow are induced by the tip leakage flow, and this creates a high loss region in the blade-to-blade region. On the other hand, the mixing effect is remarkable at the impeller outlet, and this affects the creation of the wake. This flow behavior makes the internal flow of the diffuser unsteady and the diffuser performance fluctuates due to the impeller wake at the design point.
低比转速无冠叶轮离心泵叶片扩压器内的非定常流动
对低比转速离心泵内部非定常流动进行了实验和数值研究。不带冠叶轮可以实现高扬程设计,但另一方面,与带冠叶轮相比,它们表现出复杂的内部流动和效率下降。此外,复杂的叶轮出口流动导致叶片扩散器内部流动不稳定。因此,为了提高这些低比转速离心泵的效率,需要对内部流动进行详细的研究。本文的目的是澄清叶轮内的损失机理,并研究叶轮出口流动对设计点扩散器内部流动的影响。采用非定常计算方法对泵的内部流动进行了详细的研究,从而实现了三维流型的计算。叶尖泄漏流诱发了反流和二次流,在叶间区域形成了高损失区。另一方面,叶轮出口处的混合效果显著,影响了尾迹的产生。这种流动特性使得扩压器内部流动不稳定,在设计点处由于叶轮尾迹的影响,扩压器性能出现波动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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