Computational fluid dynamics analysis of multiphase flow in crude oil pipelines

Abdulwehab A. Ibrahima, Hazwan Aizat Bin Ahmedb, Riyad O. Husseinc, Chong Perk Lind, Mesfin G. Zewge, A. Oumer
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Abstract

The presence of gas, oil and water in one system triggers complications in the process of transporting products of the oil and gas exploration. Upon handling a multiphase flow, formation of hydrate and plugging of the pipeline system causes a severe problem significantly. Hence, this research investigates on the behaviours of a multiphase flow and prediction of possible location of hydrate formation within the pipeline system using Computational Fluid Dynamics (CFD) modeling approach. The favourable condition for hydrate to form is assigned in the pipeline system and is further investigated. The results of pressure, temperature, turbulence and volume fraction obtained from the modeling process are used to predict the possible location for hydrate formation and decomposition within the internal pipeline system. The result shows a rapid change in pressure gradient observed in the area of the bending section of the pipeline and an obvious pressure difference seen within the outer wall (11 bar) and inner wall (40 bar) section of the bending pipe. Furthermore, the results indicates the area that are highly incorporated with the turbulence is at the ending part of the bending section. Hence, this phenomena enhances the chance of the formation of hydrate and decomposition within the pipeline system. Hence, having a bending in pipeline system increases the risk of the hydrate formation and deposition.
原油管道中多相流的计算流体力学分析
气、油、水在一个系统中的存在,会给油气勘探产品的输送过程带来复杂的问题。在处理多相流时,水合物的形成和管道系统的堵塞是一个非常严重的问题。因此,本研究利用计算流体动力学(CFD)建模方法研究了多相流的行为,并预测了管道系统中水合物形成的可能位置。在管道系统中确定了水合物形成的有利条件,并进行了进一步的研究。模拟过程中得到的压力、温度、湍流和体积分数的结果用于预测水合物在管道系统内部形成和分解的可能位置。结果表明,管道弯曲段区域压力梯度变化迅速,弯曲管外壁(11 bar)和内壁(40 bar)区域压力差明显。此外,结果表明,湍流高度结合的区域是在弯曲段的末端。因此,这种现象增加了管道系统内水合物形成和分解的机会。因此,管道系统的弯曲增加了水合物形成和沉积的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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