首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Sand minimum transport conditions in gas-solid-liquid three-phase stratified flow in a horizontal pipe at low particle concentrations
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Sand minimum transport conditions in gas-solid-liquid three-phase stratified flow in a horizontal pipe at low particle concentrations

机译:在低颗粒浓度下水平管中的气体固 - 液三相分层流动的砂最小运输条件

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摘要

Sand production in the life of oil and gas reservoirs is inevitable, as it is co-produced from reservoirs. Its deposition in petroleum pipelines poses considerable risk to production and can lead to pipe corrosion and flow assurance challenges. Therefore, it is important that pipe flow conditions are maintained to ensure sand particles are not deposited but in continuous motion with the flow. The combination of minimum gas and liquid velocities that ensure continuous sand motion is known as the minimum transport condition (MTC). This study investigates the effect both of sand particle diameter and concentration on MTC in gas/liquid stratified flow in a horizontal pipeline. We used non-intrusive conductivity sensors for sand detection. These sensors, used for film thickness measurement in gas/liquid flows, were used for the first time here for sand detection. We found that MTC increases with increase in particle diameter for the same concentration and also increases as the concentration increases for the same particle diameter. A correlation is proposed for the prediction of sand transport at MTC in air-water flows in horizontal pipes, by including the effect of sand concentration in Thomas's lower model. The correlation accounts for low sand concentrations and gave excellent predictions when compared with the experimental results at MTC. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:石油和天然气储层寿命中的沙子生产是不可避免的,因为它是由水库共同制作的。它在石油管道中的沉积对生产产生了相当大的风险,可以导致管道腐蚀和流量保证挑战。因此,重要的是保持管道流动条件以确保砂颗粒未沉积,而是与流动连续运动。最小气体和液体速度的组合,确保连续砂运动被称为最小传输条件(MTC)。本研究研究了水平管道中的气/液分层流动中MTC的砂粒径和浓度的影响。我们使用了用于砂检测的非侵入式电导率传感器。用于气/液体流动中的薄膜厚度测量的这些传感器在此处使用用于砂检测。我们发现MTC随着相同浓度的粒径增加而增加,并且随着浓度增加的粒径增加,随着粒径的浓度增加而增加。通过包括托马斯较低模型中的砂浓度的效果,提出了对水管流动的MTC中的砂输送的相关性。与MTC的实验结果相比,相关性对低砂浓度的相关性占据了低砂浓度。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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