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Prediction of the transition from stratified to slug flow or roll-waves in gas-liquid horizontal pipes

机译:预测气液水平管中从分层流向段塞流或横波的过渡

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摘要

In stratified gas-liquid horizontal pipe flow, growing long wavelength waves may reach the top of the pipe and form a slug flow, or evolve into roll-waves. At certain flow conditions, slugs may grow to become extremely long, e.g. 500 pipe diameter. The existence of long slugs may cause operational upsets and a reduction in the flow efficiency. Therefore, predicting the flow conditions at which the long slugs appear contributes to a better design and management of the flow to maximize the flow efficiency. In this paper, we introduce a wave transition model from stratified flow to slug flow or roll-wave regimes. The model tracks the wave crest along the pipe. If the crest overtakes the downstream wave end before hitting the top of the pipe, a roll-wave is formed, otherwise a slug. For model validation we performed measurements in air-water horizontal pipe flow facilities with internal diameters of 0.052 and 0.06 m. Furthermore, we made numerical calculations using a transient one-dimensional multiphase flow simulator (MAST) which adopts a four-field model. The model presented in this paper successfully predicts the evolution of waves and their transition into either slugs or roll-waves. It also predicts the formation time of slugs and roll-waves with a satisfactory agreement.
机译:在分层的气液水平管流中,长波的生长可能会到达管的顶部并形成弹状流,或者演变为侧倾波。在某些流量条件下,团块可能会变得非常长,例如管道直径为500。长塞的存在可能会导致操作失常并降低流量效率。因此,预测出现长条的流动条件有助于更好地设计和管理流动,从而最大程度地提高流动效率。在本文中,我们介绍了一种从分层流到段塞流或侧倾波浪形式的波浪过渡模型。模型跟踪沿管道的波峰。如果波峰在到达管道顶部之前超过了下游波端,则会形成滚动波,否则会形成弹头。为了进行模型验证,我们在内径为0.052和0.06 m的空气-水水平管道流动设施中进行了测量。此外,我们使用了采用四场模型的瞬态一维多相流模拟器(MAST)进行了数值计算。本文介绍的模型成功地预测了波浪的演化及其向或波状波的过渡。它还可以令人满意地预测弹头和横波的形成时间。

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