Experimental Validation of the Numerical Model for Oil–Gas Separation

IF 2.1 Q2 ENGINEERING, MULTIDISCIPLINARY Inventions Pub Date : 2023-10-10 DOI:10.3390/inventions8050125
Sorin Gabriel Tomescu, Ion Mălăel, Rareș Conțiu, Sebastian Voicu
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Abstract

The oil and gas sector is important to the global economy because it covers the exploration, production, processing, transportation, and distribution of oil and natural gas resources. Despite constant innovation and development of technologies to improve efficiency, reduce environmental impact, and optimize operations in the gas and oil industry over the last few decades, there is still room to increase the efficiency of the industry’s equipment in order to reduce its carbon footprint. The separation of gas from oil is a critical stage in the technological production chain, and it is carried out using high-performance multi-phase separators to limit greenhouse gas emissions and have a low impact on the environment. In this study, an improved gas–oil separator configuration was established utilizing CFD techniques. Two separator geometry characteristics were studied. Both cases have the same number of subdomains, two porous media, and four fluid zones, but with a difference in the pitch of the cyclone from the inlet subdomain. The streamlines in a cross-plan of the separator and the distribution of the oil volume fraction from the intake to the outlet were two of the numerical results that were shown as numeric outcomes. The validation of these results was performed using an experimental testing campaign that had the purpose of determining the amount of lubricating oil that is discharged together with the compressed gas at the separator outlet.
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油气分离数值模型的实验验证
石油和天然气行业对全球经济至关重要,因为它涵盖了石油和天然气资源的勘探、生产、加工、运输和分销。尽管在过去的几十年里,为了提高效率、减少对环境的影响、优化油气行业的运营,技术不断创新和发展,但为了减少碳足迹,行业设备的效率仍有提高的空间。油气分离是技术生产链中的关键阶段,采用高性能多相分离器进行,限制温室气体排放,对环境影响小。在本研究中,利用CFD技术建立了一种改进的气油分离器配置。研究了两种分离器的几何特性。这两种情况都具有相同数量的子域,两个多孔介质和四个流体区,但旋风器的螺距与入口子域不同。分离器交叉平面上的流线和从进气到出口的油体积分数分布是数值结果中的两个,显示为数值结果。这些结果的验证是通过一个实验测试活动进行的,目的是确定在分离器出口与压缩气体一起排出的润滑油量。
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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来源期刊
Inventions
Inventions Engineering-Engineering (all)
CiteScore
4.80
自引率
11.80%
发文量
91
审稿时长
12 weeks
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