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首页> 外文期刊>Progress in Natural Science >Stability of stratified flow and slugging in horizontal gas-liquid flow
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Stability of stratified flow and slugging in horizontal gas-liquid flow

机译:水平气液流中分层流和团状流的稳定性

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摘要

A transient one-dimensional two-fluid model is proposed to investigate numerically the interfacial instability and the onset of slugging for liquid-gas flow in a horizontal duct. In the present model, the effects of surface tension and transverse variations in dynamic pressure are taken into account. The evolution of interfacial disturbances is displayed and compared with the linear viscous Kelvin-Helmholtz stability analyses. It shows that interfacial wave is more instable due to the non-linear effect. The model predicts well the stability limit of stratified flow in comparison with the experimental data, and also automatically tracks the onset of slugging. The results show that the initiation of hydrodynamic slugging is related to local interfacial instability. Based on the cycle of slugging, a model for slug frequency is presented, which predicts the trends of slug frequencies with gas/liquid flow rate well in comparison with the available data. The effects of physical properties on slugging have been examined. It is found that with the increase in the gas viscosity and liquid density the slugging would be inhibited, whereas, with the increase in liquid viscosity and gas density, the slugging can be promoted.
机译:提出了一个瞬态一维两流体模型,以数值方式研究水平管道中液-气流动的界面不稳定性和of塞的开始。在本模型中,考虑了表面张力和横向压力动态变化的影响。显示了界面扰动的演变,并与线性粘性开尔文-亥姆霍兹稳定性分析进行了比较。结果表明,由于非线性效应,界面波更加不稳定。与实验数据相比,该模型可以很好地预测分层流的稳定性极限,并且还可以自动跟踪塞团的发生。结果表明,流体动力击打的发生与局部界面的不稳定性有关。基于弹丸的周期,提出了一种弹丸频率模型,与现有数据相比,该模型能较好地预测气/液流速下弹丸频率的变化趋势。已经研究了物理性质对拍击的影响。发现随着气体粘度和液体密度的增加,团块将被抑制,而随着液体粘度和气体密度的增加,团块可以被促进。

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