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首页> 外文期刊>Journal of Mechanical Science and Technology >Experimental study of bubbly swirling flow in a vertical tube using ultrasonic velocity profiler (UVP) and wire mesh sensor (WMS)
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Experimental study of bubbly swirling flow in a vertical tube using ultrasonic velocity profiler (UVP) and wire mesh sensor (WMS)

机译:超声波速度分布仪(UVP)和金属丝网传感器(WMS)在垂直管中产生气泡回旋流的实验研究

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摘要

Two-phase air-water bubbly swirling flow through a pipe is a complex turbulent flow and its prediction is still challenging. The present paper describes the experimental investigation of the air-water bubbly swirling flow in vertical co-current flow. Swirling flow is induced by a twisted tape in a 20 mm inner diameter pipe. The flow is investigated using Ultrasonic velocity profiler (UVP), which allows the measurement of liquid and gas velocities simultaneously. Furthermore, simultaneous measurement of void fraction is performed using Wire mesh sensor (WMS). The experimental results reveal that swirling flow has significant impact on bubbles' distribution. In low liquid flow rate, the average bubble velocity is fairly uniform along the radial position and void fraction increases in the near wall region. However, increasing liquid flow rate at constant gas flow rate leads to increase in void fraction in the core region, this is mainly due to drift velocity which is affected by centrifugal force. Experimental findings and parametric trends based on the effects of swirling flow are summarized and discussed.
机译:流经管道的两相气泡混合气是复杂的湍流,其预测仍具有挑战性。本文描述了垂直顺流中空气-水气泡回旋流的实验研究。旋流是由内径为20 mm的管道中的缠绕带引起的。使用超声波速度分析仪(UVP)对流动进行了研究,该仪器可以同时测量液体和气体的速度。此外,使用丝网传感器(WMS)可以同时测量空隙率。实验结果表明,旋流对气泡的分布有重要影响。在低液体流速下,沿径向位置的平均气泡速度相当均匀,并且在近壁区域中空隙率增加。然而,以恒定的气体流量增加液体流量会导致芯区域中的空隙率增加,这主要是由于漂移速度受离心力的影响。总结和讨论了基于旋流影响的实验结果和参数趋势。

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