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首页> 外文期刊>International Journal of Multiphase Flow >Air-water counter-current slug flow data in vertical-to-horizontal pipes containing orifice type obstructions
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Air-water counter-current slug flow data in vertical-to-horizontal pipes containing orifice type obstructions

机译:包含孔口型障碍物的垂直至水平管道中的空气-水逆流弹状流数据

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This paper presents experimental counter-current air-water flow data on the onset of flooding and slugging, the slug propagation velocity, the predominant slug frequency and the average void fraction collected by using different size orifices installed at two locations in a horizontal pipe. For the flow conditions covered during these experiments, it was observed that there is no significant difference between the onset of flooding and the onset of slugging when an orifice is installed in the horizontal run. However, a difference was observed for the experiments carried out without orifices. Furthermore, the position of the orifice with respect to the elbow does not affect the onset of flooding and slugging. When an orifice is installed in the horizontal run, it was observed that slugs occur due to the mutual interaction (constructive interference) of two waves traveling in opposite directions. This means that a completely different mechanism seems to govern the formation of slugs in counter-current two-phase flows in horizontal partially blocked pipes. This is in contrast to that described for the slugging phenomena in co-current flow, where wave instability seems to be the principal mechanisms responsible of bridging the pipe. The mutual interaction of waves traveling in opposite directions seems to control the behaviour of the slug propagation velocity, the slug frequency and average void fraction with increasing the gas superficial velocity. (c) 2005 Elsevier Ltd. All rights reserved.
机译:本文介绍了通过在水平管的两个位置上安装不同尺寸的孔收集的洪水和塞团,塞子传播速度,主要塞子频率和平均空隙率收集的实验逆流空气-水流量数据。对于这些实验中涵盖的流动条件,观察到在水平运行中安装孔口时,溢流的开始和and塞的开始之间没有显着差异。然而,在没有孔的情况下进行的实验观察到差异。此外,孔口相对于肘部的位置不影响浸水和击打的发生。当在水平方向上安装孔口时,观察到由于两个沿相反方向传播的波的相互作用(相长干涉)而产生了团块。这意味着完全不同的机制似乎可以控制水平部分阻塞的管道中逆流两相流中的团块形成。这与针对顺流中的sl塞现象所描述的相反,在后者中,波的不稳定性似乎是造成管道桥接的主要机制。沿相反方向传播的波的相互相互作用似乎随着气体表观速度的增加而控制了propagation的传播速度,the的频率和平均空隙率。 (c)2005 Elsevier Ltd.保留所有权利。

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