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An experimental investigation of the interface behavior of slug flow in horizontal pipe

机译:水平管段塞流界面行为的实验研究

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摘要

The simultaneous gas-liquid slug flow phenomena often occur in the industrial production such as the gas or oil transportation system. The research on the gas-liquid interface is essential to the safety design of industrial piping systems and the comprehension of flow mechanism. However, most of the researches on slug flow are only concentrated on the spatial domain parameters of slug bubble and seldom consider the frequency domain characteristics. In this paper, a series of experiments were performed to investigate the influence of gas and liquid phases on the interface shape of slug flow. The results show that the increase of gas or liquid superficial velocity has an opposite effect on the interface shape of slug flow. Moreover, the breakup of slug bubble tail was observed in the slug flow, and the breakup mechanism was developed based on the analysis of the frequency distribution of gas-liquid interface. Finally, the maximum spectral amplitude was presented as a new interface parameter to characterize the interface distribution of slug flow, and a correlation between the gas-liquid superficial velocity and the maximum spectral amplitude was established, which can further reveal the relationship between the interface behavior and the flow velocity. (C) 2019 Elsevier Ltd. All rights reserved.
机译:同时发生气液塞流现象通常发生在工业生产中,例如天然气或石油输送系统。气液界面的研究对于工业管道系统的安全设计和流动机理的理解至关重要。但是,关于团状流的研究大多只集中在团状气泡的空间域参数上,很少考虑频域特征。在本文中,进行了一系列实验以研究气相和液相对团状流界面形状的影响。结果表明,气体或液体表面速度的增加对团状流的界面形状有相反的影响。此外,在团状流中观察到团状气泡尾部的破裂,并基于对气液界面频率分布的分析,建立了破裂机理。最后,将最大光谱振幅作为表征团状流界面分布的新界面参数,建立了气液表观速度与最大光谱振幅之间的相关性,可以进一步揭示界面行为之间的关系。和流速。 (C)2019 Elsevier Ltd.保留所有权利。

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