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NUMERICAL SIMULATION OF STRATIFIED TWO-PHASE FLOW IN A NEARLY HORIZONTAL GAS-LIQUID PIPELINE WITH A LEAK

机译:含泄漏近水平气液管道中分层两相流的数值模拟

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The capability of producing accurate numerical simulations of transient gas-liquid flows in gas pipelines has long been a serious concern in the oil industry. In this paper we are particularly interested in simulating this type of flow during the occurrence of a leak in the pipe. We use the flux-corrected transport (FCT) finite-difference method, which is second-order in space, to solve a one-dimensional single-pressure four-equation two-fluid model. We consider this two-phase flow to occur in a nearly horizontal pipeline characterized by the stratified-flow pattern, and we assume that the flow is isothermal with a compressible gas phase and an incompressible liquid phase. We model the leak as a source term in the mass conservation equations. The results of the numerical simulations allow the model sensitivity to be studied by changing the leak diameter and the leak location. From this analysis, we may observe how these parameters affect the pressure gradients along the pipeline that develop upstream and downstream of the leak.
机译:长期以来,对天然气管道中的瞬态气-液流动进行精确数值模拟的能力一直是石油工业中的一个严重问题。在本文中,我们对在管道中发生泄漏时模拟这种类型的流动特别感兴趣。我们使用空间中的二阶通量校正输运(FCT)有限差分方法来求解一维单压力四方程两流体模型。我们认为这种两相流发生在以分层流型为特征的近乎水平的管道中,并且我们假设该流是等温的,具有可压缩的气相和不可压缩的液相。我们在质量守恒方程中将泄漏建模为源项。数值模拟的结果允许通过更改泄漏直径和泄漏位置来研究模型灵敏度。通过此分析,我们可能会观察到这些参数如何影响沿泄漏上游和下游发展的管道的压力梯度。

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