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A Suggested Mechanism of Significant Stall Suppression Effects by Air Separator Devices in Axial Flow Fans

机译:轴流风机中空气分离器装置显着抑制失速的机理

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Radial-vaned air separators show a strong stall suppression effect in an axial flow fans. From a survey of existing literature on the effects and the author's data, a possible mechanism for the significant effects has been proposed here. The stall suppression is suggested to have been achieved by a combination of the following several effects; (1) suction of blade and casing boundary layers and elimination of embryos of stall, (2) separation and straightening of reversed swirling flow from the main flow, (3) induction of the fan main flow toward the casing wall and enhancement of the outward inclination of meridional streamlines across the rotor blade row, thus keeping the Euler head increase in the decrease in fan flow rate, and (4) reinforcement of axi-symmetric structure of the main flow. These phenomena have been induced and enhanced by a stable vortex-ring encasing the blade tips and the air separator. These integrated effects appear to have caused the great stall suppression effect that would have been impossible by other types of stall prevention devices. Thus the author would like to name the device "tip-vortex-ring assisted stall suppression device".
机译:径向叶片式空气分离器在轴流风机中显示出强大的失速抑制效果。通过对有关影响和作者数据的现有文献进行的调查,这里提出了产生明显影响的可能机制。建议通过以下几种效果的组合来实现失速抑制。 (1)吸入叶片和机壳边界层,消除失速的胚芽;(2)从主流中分离并矫正逆向旋流,(3)引导风机主流向机壳壁,并增强向外流动子午线流经整个转子叶片排的倾斜,从而使欧拉头在风扇流量的减小中保持增加,并且(4)增强了主流的轴对称结构。这些现象是通过将叶尖和空气分离器固定在一起的稳定的涡流环引起和增强的。这些综合作用似乎引起了很大的失速抑制效果,这是其他类型的失速防止装置无法实现的。因此,作者想将该装置命名为“尖端涡环辅助失速抑制装置”。

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