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Transient drift flux modelling of severe slugging in pipeline-riser systems

机译:管道冒口系统中重击的瞬态漂移通量建模

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摘要

A large number of pipelines in the petroleum industry simultaneously transport gas and liquid. Transient behaviour of multiphase flow is frequently encountered in these pipelines. A common example is severe slugging that can occur in multiphase flow systems where a pipeline segment with a downward or even horizontal inclination is followed by a riser segment with an upward inclination. Transient flow conditions associated with severe slugging are relatively slow. Therefore, a transient drift flux model consisting of one momentum balance equation might suffice to express the dynamics of severe slugging. We present a transient drift flux model to simulate severe slugging phenomenon in pipeline-riser systems. The present model contains recently published correlations by Shi et al. for the drift flux slip model which cover the complete range of flow conditions without introducing any discontinuities in the calculated flow parameters. Thus, the transient simulations are converging rapidly and efficiently without applying any form of smoothing. The present model is tested against experimental data for severe slugging showing a better performance than previously published models.
机译:石油工业中的大量管道同时输送气体和液体。在这些管道中经常会遇到多相流的瞬态行为。一个常见的例子是在多相流系统中可能会发生严重的流塞现象,在多相流系统中,具有向下或什至水平倾斜度的管道段之后是具有向上倾斜度的立管段。与严重拍击有关的瞬态流动条件相对较慢。因此,由一个动量平衡方程组成的瞬态漂移通量模型可能足以表达严重击打的动力学。我们提出了一个瞬态漂移通量模型,以模拟管道冒口系统中的严重塞现象。本模型包含Shi等人最近发表的相关性。对于漂移通量滑移模型,该模型涵盖了完整的流动条件范围,而不会在计算的流动参数中引入任何不连续性。因此,瞬态仿真在不进行任何形式的平滑的情况下迅速有效地收敛。针对严重拍打的实验数据对本模型进行了测试,显示出比以前发布的模型更好的性能。

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