Investigation of gas gathering pipelines operation efficiency and selection of improvement methods

Q3 Engineering
V. Volovetskyi, Ya. Doroshenko, G. Kogut, A. P. Dzhus, I. Rybitskyi, J. I. Doroshenko, O. Shchyrba
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引用次数: 6

Abstract

Purpose: The article implies theoretical and experimental studies of the liquid pollution accumulations impact on the efficiency of gathering gas pipelines operation at the Yuliivskyi oil and gas condensate production facility (OGCPF). Research of efficiency of gas pipelines cleaning by various methods. Design/methodology/approach: The research methodology consists of determining the hydraulic efficiency of gathering gas pipelines before and after cleaning of their internal cavity by different methods and comparing the obtained results, which allows to objectively evaluate the efficiency of any cleaning method. CFD simulation of gas-dynamic processes in low sections of gas pipelines with liquid contaminants. Findings: Experimental studies of cleaning efficiency in the inner cavity of the gas gathering pipelines of the Yuliivskyi OGCPF by various methods, including: supply of surfactant solution, creating a high-speed gas flow, use of foam pistons were performed. It was established that cleaning the inner cavity of gas gathering pipelines by supplying a surfactant solution leads to an increase in the coefficient of hydraulic efficiency by 2%-4.5%, creating a high-speed gas flow by 4%-7%, and under certain conditions by 8%-10 % and more. However, for two gas pipelines the use of foam pistons allowed to increase the coefficient of hydraulic efficiency from 5.7 % to 10.5 % with a multiplicity of foam from 50 to 90. be recommended for other deposits.The results of CFD simulation showed that the accumulation of liquid contaminants in the lowered sections of gas pipelines affects gas-dynamic processes and leads to pressure losses above the values provided by the technological regime. With the increase in liquid contaminants volume the pressure losses occur. Moreover, with a small amount of contamination (up to 0.006 m3), liquid contaminants do not have a significant effect on pressure loss. If the contaminants volume in the lowered section of the pipeline is greater than the specified value, the pressure loss increases by parabolic dependence. The increase in mass flow leads to an increase in the value of pressure loss at the site of liquid contamination. Moreover, the greater the mass flow, the greater the impact of its changes on the pressure loss. The CFD simulation performed made it possible not only to determine the patterns of pressure loss in places of liquid contaminants accumulation in the inner cavity of gas pipelines, but also to understand the gas-dynamic processes in such places, which is an unconditional advantage of this method over experimental. Research limitations/implications: The obtained simulation results showed that the increase in the volume of liquid contaminants in the inner cavity of gas gathering pipelines leads to an increase in pressure losses above the value provided by the technological regime. To achieve maximum cleaning of gas gathering pipelines, it is necessary to develop a new method that will combine the considered. Practical implications: The performed experimental results make it possible to take a more thorough approach to cleaning the inner cavity of gas gathering pipelines and to forecast in advance to what extent the hydraulic efficiency of gas gathering pipelines can be increased. Originality/value: The obtained results of CFD simulation of gas-dynamic processes in lowered sections of gas pipelines with liquid contaminants, experimental studies of the effectiveness of various methods of cleaning the inner cavity of gas gathering pipelines has original value.
集气管道运行效率调查及改进方法选择
目的:本文对Yuliivskyioil and gas condensate production facility (OGCPF)的液体污染积聚对集输管道运行效率的影响进行了理论和实验研究。不同方法对天然气管道清洗效率的研究。设计/方法/方法:研究方法包括用不同的方法清洗内腔前后测定集气管道的水力效率,并比较得到的结果,从而可以客观地评价任何清洗方法的效率。含液体污染物输气管道低段气体动力学过程的CFD模拟。研究结果:对Yuliivskyi OGCPF集气管道内腔的清洗效率进行了实验研究,包括:提供表面活性剂溶液、形成高速气流、使用泡沫活塞等。结果表明,用表面活性剂溶液清洗集气管道内腔,可使水力效率系数提高2% ~ 4.5%,使气体高速流动提高4% ~ 7%,在一定条件下可提高8% ~ 10%以上。然而,对于两条天然气管道,泡沫活塞的使用允许将液压效率系数从5.7%提高到10.5%,泡沫倍数从50到90。推荐用于其他存款。CFD模拟结果表明,液体污染物在输气管道下段的积累影响了气体动力学过程,导致压力损失超过了技术制度提供的值。随着液体污染物体积的增大,压力损失也随之发生。此外,在少量污染(高达0.006 m3)的情况下,液体污染物对压力损失没有显著影响。当管道下段污染物体积大于规定值时,压力损失呈抛物线关系增加。质量流量的增加导致液体污染部位的压力损失值的增加。质量流量越大,其变化对压力损失的影响越大。CFD模拟不仅可以确定管道内腔液体污染物积聚处的压力损失模式,而且可以了解这些地方的气体动力学过程,这是该方法相对于实验的无条件优势。研究局限/启示:获得的模拟结果表明,气体集输管道内腔液体污染物体积的增加导致压力损失增加,超过技术制度提供的值。为了最大限度地清洁集气管道,有必要开发将所考虑的方法结合起来的新方法。实际意义:实验结果可以对集气管道内腔的清洗采取更彻底的方法,并可以提前预测集气管道水力效率的提高程度。独创性/价值:对含液体污染物的输气管道下半段气体动力学过程进行CFD模拟所得结果,对各种集气管道内腔清洗方法的有效性进行实验研究,具有独创性价值。
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来源期刊
Journal of Achievements in Materials and Manufacturing Engineering
Journal of Achievements in Materials and Manufacturing Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
2.10
自引率
0.00%
发文量
15
期刊介绍: The Journal of Achievements in Materials and Manufacturing Engineering has been published by the Association for Computational Materials Science and Surface Engineering in collaboration with the World Academy of Materials and Manufacturing Engineering WAMME and the Section Metallic Materials of the Committee of Materials Science of the Polish Academy of Sciences as a monthly. It has 12 points which was received during the evaluation by the Ministry of Science and Higher Education journals and ICV 2017:100 on the ICI Journals Master list announced by the Index Copernicus. It is a continuation of "Proceedings on Achievements in Mechanical and Materials Engineering" published in 1992-2005. Scope: Materials[...] Properties[...] Methodology of Research[...] Analysis and Modelling[...] Manufacturing and Processingv Biomedical and Dental Engineering and Materials[...] Cleaner Production[...] Industrial Mangement and Organisation [...] Education and Research Trends[...]
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