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Experimental investigation of tip-leakage flow in an axial flow fan at various flow rates

机译:各种流速轴流风扇尖漏流的实验研究

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We investigate the evolution of tip-leakage vortex (TLV) in a low-pressure axial flow fan using digital particle image velocimetry. The blade rotational speed is fixed at 1000 rpm, and the Reynolds number is 547000 based on the blade tip radius and tip velocity. The evolution of TLV in downstream is highly influenced by the incoming flow rate. The TLV breakup occurs for the peak efficiency and stall conditions and sometimes for a higher flow rate, but does not occur for the highest flow rate considered. Thus, the migration speed of the TLV for the peak efficiency condition is faster due to the TLV breakup than those for higher flow rates. The scatter plot of the TLV center location indicates that the TLV wanders around its mean location and the region swept by the wandering motion increases as the TLV migrates downstream. High turbulent kinetic energy exists at the phase-averaged TLV center and its upstream location, respectively, owing to the wandering motion and the interaction between the TLV and main axial flow.
机译:我们使用数字粒子图像VELOCIMETRY研究尖漏涡流(TLV)在低压轴流式风扇中的演变。叶片转速以1000rpm固定,并且基于叶片尖端半径和尖端速度,雷诺数为547000。下游TLV的演变受到流动速率的高度影响。 TLV分解发生峰值效率和失速条件,有时用于更高的流速,但是由于所考虑的最高流速而不会发生。因此,由于TLV破碎的TLV断开而不是更高流速的升温,TLV的迁移速度更快。 TLV中心位置的散点图表明,随着TLV迁移下游,TLV围绕其平均位置的平均位置和该区域扫过的区域增加。由于TLV和主要轴向流动之间的相互作用,分别在相位平均TLV中心及其上游位置处存在高湍流动能。

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