Investigation of the Influence of Flow Pattern On the Internal Corrosion in Horizontal-Vertical Downward Pipe with Oil-Water Flow

Yan Li, Guoqing Su, Qianlin Wang, Zhansheng Tao, Jianwen Zhang
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Abstract

In the petroleum and petrochemical industries, oil-water flow is widespread inside the pipes. The existence of water often results in internal corrosion in the horizontal-vertical downward pipe when water contacts the pipe wall. Surface wetting behavior and wall shear stress are two important factors affecting corrosion procedure, which are governed by the flow patterns. With the propose to mitigate corrosion, focus shall be concentrated on the impact of flow pattern towards corrosion. In this work, the flow regime with oil-water flow in the horizontal-vertical pipe are investigated by computational fluid dynamics simulations. The cases with different mixture velocity (0.1m/s-2.2m/s) and different water cut (3%-40%) are investigated. The key discovery in this paper is that five types of flow patterns can be identified based on the multiphase flow in the horizontal-vertical pipe, which is rarely reported in recent work. According to the results of the surface wetting status and wall shear stress distribution, the severe corrosion area is predicted and classified into five types. The inside wall of elbows and the outside wall of vertical pipes are the areas most susceptible to corrosion, and the results are well in line with the on-site data.
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流动模式对油水流动水平垂直向下管道内部腐蚀的影响研究
在石油和石化工业中,管道内部普遍存在油水流。在水平-垂直向下的管道中,当水与管壁接触时,水的存在往往会导致内部腐蚀。表面润湿行为和管壁剪应力是影响腐蚀过程的两个重要因素,而这两个因素又受流动模式的制约。为了减轻腐蚀,重点应放在流动模式对腐蚀的影响上。在这项工作中,通过计算流体动力学模拟研究了水平-垂直管道中油水流动的流态。研究了不同混合速度(0.1m/s-2.2m/s)和不同水切割率(3%-40%)的情况。本文的主要发现是,基于水平-垂直管道中的多相流,可以识别出五种流型,这在近期的研究中鲜有报道。根据表面润湿状态和管壁剪应力分布的结果,预测了严重腐蚀区域并将其分为五种类型。弯头内壁和垂直管道外壁是最容易受到腐蚀的区域,结果与现场数据非常吻合。
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