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首页> 外文期刊>International Journal of Multiphase Flow >Investigation of local gas holdup and bubble dynamics using four-point optical probe technique in a split-cylinder airlift reactor
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Investigation of local gas holdup and bubble dynamics using four-point optical probe technique in a split-cylinder airlift reactor

机译:用四点光学探针技术在分流缸空运反应堆中使用四点光学探针技术的研究

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摘要

A four-point optical fiber probe technique was employed in a split-cylinder airlift reactor with an air-water system. Effect of superficial gas velocities- 0.3, 1.0, 2.0, and 2.8 cm/s- was studied on the local gas holdup and bubble dynamic properties namely, bubble passage frequency, interfacial area, bubble chord length, and bubble rise velocity in both the riser and downcomer sections of the reactor. The bubble chord length and bubble velocity in the riser and downcomer followed log-normal distribution and normal distribution respectively. The gas holdup and interfacial area in the riser increased by 900 and 800% for a superficial gas velocity increase from 0.3 to 2.8 cmis, while those at the top of the downcomer by 500, and 400% for a superficial gas velocity increase from 1.0 to 2.8 cmis, respectively. At each superficial gas velocity, the bubble passage frequency, gas holdup, and interfacial area did not vary significantly along the axis of the riser. An axial variation in bubble passage frequency, gas holdup, and interfacial area was observed in the downcomer. A correlation for the variation of the gas holdup in the riser was developed based on superficial gas and liquid circulation velocities. The correlation for the gas holdup in the downcomer was developed to account for the axial variation observed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:用空气水系统采用四点光纤探针技术。浅表气体速度 - 0.3,1.0,2.0和2.8cm / s的效果在局部气体储存和气泡动态特性上研究了气泡通道频率,界面区域,泡沫弦长,以及提升管中的泡沫上升速度和反应器的降液管部分。提升管和降液管中的气泡弦长和气泡速度,遵循对数正态分布和正态分布。提升管中的气体储存和界面区域增加了900%和800%,浅表气体速度从0.3〜2.8cmis增加,而浅表气体速度从1.0增加到500°的下层,400%增加了400% 2.8 cmis分别。在每个浅表气体速度下,气泡通道频率,气体保持和界面区域沿提升机的轴线没有显着变化。在降液管中观察到气泡通道频率,气体保持和界面区域的轴向变化。基于浅表气体和液体循环速度,开发了对提升管中气体堆积变化的相关性。开发了削弱器中的气体封闭的相关性以考虑观察到的轴向变化。 (c)2017 Elsevier Ltd.保留所有权利。

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