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Investigation on the Horn-Like Vortices in Stator Corner Separation Flow in an Axial Flow Pump

机译:轴流泵中定子角分离流动喇叭状涡流的研究

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Stator corner separation flow existing in the guide-vane domain has significant effects on the characteristics of an axial-flow pump. The objective of this paper is to investigate the vortical structures in stator corner separation flow. Transient numerical simulation with a proof experiment was conducted for an axial-flow pump. Structural features of the vortices and their effects on velocity moment attenuation and pressure fluctuations in the guide-vane domain were analyzed. Horn-like vortices are found in the stator corner separation flow. A full cycle of the horn-like vortex evolution, "inception-growth-development-decay," is presented. During this transit process, the vortex tube is gradually elongated and deformed, which forms an oblique separation line on the vane suction surface. High velocity moment always exists in the flow passages of the guide-vane domain, and the uniformity of main flows is gradually reduced. Meanwhile, periodic pressure fluctuations arise. The maximum amplitude of pressure fluctuations in the flow passages occurs in the region where the horn-like vortex cores at the "growth" stage lie in, which is approximately 3.39 times higher than that in the vaneless region between the impeller and guide-vane. The dominant frequency of pressure fluctuations in the flow passages is approximately 0.75 times the rotating frequency, which is close to the frequency of the full cycle of the horn-like vortex evolution. Horn-like vortices have remarkable effects on the flow fields, and more attention should be paid to them.
机译:在导叶片域中存在的定子角分离流量对轴流泵的特性具有显着影响。本文的目的是研究定子角分离流动中的涡流结构。具有证据实验的瞬态数值模拟,用于轴流泵。分析了涡流的结构特征及其对导叶结构域中的速度衰减和压力波动的影响。在定子角分离流动中发现了喇叭状漩涡。展示了喇叭形涡旋进化的完整循环,“初始 - 增长 - 发展 - 衰变”。在该过渡过程中,涡旋管逐渐伸长和变形,形成叶片抽吸表面上的倾斜分离线。高速时刻总是存在于导叶片域的流动通道中,并且主流的均匀性逐渐减小。同时,出现周期性的压力波动。流动通道中的最大压力波动的幅度发生在“生长”阶段的喇叭形涡流芯中的区域中,其比叶轮和导叶片之间的差异区域高约3.39倍。流动通道中的压力波动的主导频率约为旋转频率的0.75倍,这接近喇叭涡流进化的完整循环的频率。喇叭像涡旋对流动场具有显着影响,应将其关注更多。

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