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Dynamic Characteristics of Rotating Stall in Mixed Flow Pump

机译:混流泵旋转失速的动态特性

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Rotating stall, a phenomenon that causes flow instabilities and pressure hysteresis by propagating at some fraction of the impeller rotational speed, can occur in centrifugal impellers, mixed impellers, radial diffusers, or axial diffusers. Despite considerable efforts devoted to the study of rotating stall in pumps, the mechanics of this phenomenon are not sufficiently understood. The propagation mechanism and onset of rotating stall are not only affected by inlet flow but also by outlet flow as well as the pressure gradient in the flow passage. As such, the complexity of these concepts is not covered by the classical explanation. To bridge this research gap, the current study investigated prerotation generated at the upstream of the impeller, leakage flow at the tip clearance between the casing and the impeller, and strong reserve flow at the inlet of the diffuser. Understanding these areas will clarify the origin of the positive slope of the head-flow performance curve for a mixed flow pump. Nonuniform pressure distribution and adverse pressure gradient were also introduced to evaluate the onset and development of rotating stall within the diffuser.
机译:在离心式叶轮,混合叶轮,径向扩散器或轴向扩散器中可能发生旋转失速,这种现象会因以叶轮转速的一部分传播而引起流动不稳定性和压力滞后。尽管致力于研究泵中的旋转失速,但是对该现象的机理还没有足够的了解。传播机理和旋转失速的发生不仅受入口流量的影响,还受到出口流量以及流道中压力梯度的影响。因此,经典解释未涵盖这些概念的复杂性。为了弥合这一研究差距,当前的研究调查了在叶轮上游产生的预旋转,在壳体与叶轮之间的尖端间隙处的泄漏流以及在扩散器入口处的强储备流。了解这些区域将阐明混合流泵扬程性能曲线的正斜率的起源。还引入了不均匀的压力分布和不利的压力梯度,以评估扩散器内旋转失速的发生和发展。

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