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Rotating stall mechanism and stability control in the pump flows

机译:泵流量中的旋转失速机制和稳定性控制

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摘要

Based on experimental measurements and flow dynamics analysis, the mechanism of flow separations in the pump flow has been investigated and revealed. The possible flow separation including the rotating stall in the vaned diffuser under the normal flow condition has been confirmed to be merely a diffuser effect and caused by the oversized expansion angle of the diffuser. The dynamics of the part load flow separation of both the stationary and the non-stationary character has been identified to be related to the induced flow circulation at the impeller inlet. The associated flow separation mechanism has been revealed with respect to the build-up of a flow dynamical barrier on the shroud side of the impeller. It exactly explains the coincidence of the flow separation at the impeller inlet and that at the impeller outlet. To quantify the onset of the flow separation, a hypothesis is established based on the revealed mechanism. This has been satisfactorily validated by tests with flow visualizations, pressure measurements and laser doppler anemometry applications. The method for stability control of the pump flows with effective suppression of the flow separation has also been presented.
机译:基于实验测量和流动力学分析,研究并揭示了泵流中的流分离机理。在正常流动条件下,包括叶片式扩压器中的旋转失速在内的可能的流分离已被证实仅仅是扩压器效应,并且由扩压器的过大膨胀角引起。静态和非静态特性的部分负荷流分离的动力学已被确定为与叶轮入口处的感应流循环有关。关于在叶轮的护罩侧上的流动动力屏障的建立,已经揭示了相关的流动分离机构。它准确地解释了叶轮入口处和叶轮出口处流动分离的巧合。为了量化流动分离的开始,基于揭示的机理建立了假设。通过流量可视化,压力测量和激光多普勒风速计应用的测试已令人满意地验证了这一点。还提出了一种有效抑制流量分离的泵流量稳定控制方法。

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  • 来源
    《Journal of Power and Energy》 |2011年第6期|p.779-788|共10页
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  • 作者单位

    Oberhasli Hydroelectric Power Company (KWO), CH-3862 Innertkirchen, Switzerland.;

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  • 正文语种 eng
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