Possibility assessment for using protective coatings and polymer materials on tubing to prevent inorganic scaling on the inner surface of pipes

Q2 Engineering
Denis V. Berkov, I.I. Kostyuk, P. Yudin, Alexander G. Verevkin
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引用次数: 0

Abstract

The inorganic scaling in wells is a common problem faced by mining companies. At present, the use of protective coatings for tubing as a measure to prevent or reduce the formation of inorganic scale deposits on pipe walls has not been fully studied. To use protective coatings as a measure to counteract the deposition of inorganic salts, it is necessary to develop a method that allows assessing the ability of coatings, as well as polymer and metal materials, to prevent the formation of inorganic scale deposits on the inner surface of pipes.The article proposes a method for assessing the ability of protective coatings to resist the inorganic scaling on the inner surface of tubing. The proposed assessment method allows to make an informed decision on the advisability of using internal protective coatings of tubing to prevent (or reduce) the formation of inorganic scale deposits. The authors consider design features of a test bench for assessing the resistance of coatings to inorganic scale deposits, which allows to simulate the conditions for the formation of scale deposits that are as close as possible to the real conditions of oil production facilities. The article presents the results of bench tests of nine coating samples, two polymer samples and one sample made of St 40G2 steel. To assess the effectiveness of using tubing with an internal anti-corrosion coating as a measure to combat scale deposits, additional research is required to assess the possibility of complex use of coatings in conjunction with other methods of preventing processes of inorganic scaling. Thus, the authors developed the Bench for assessing the resistance of protective coatings of tubing to inorganic scale deposits. A dynamic testing technique is proposed to evaluate the resistance of protective coatings to inorganic scale deposits. Based on the presented results, conclusions were drawn about the possibility of using protective coatings on tubing as a measure to prevent the formation of inorganic scale deposits on the inner surface of the tubing.
评估在管道上使用保护涂层和聚合物材料以防止管道内表面无机物结垢的可能性
油井中的无机垢是矿业公司面临的一个常见问题。目前,对使用油管保护涂层作为防止或减少管壁无机垢沉积的措施还没有进行充分研究。要使用保护涂层作为抵御无机盐沉积的措施,有必要开发一种方法,以评估涂层以及聚合物和金属材料防止管道内表面形成无机垢沉积的能力。通过所提出的评估方法,可以就是否应该使用管道内部保护涂层来防止(或减少)无机垢沉积的形成做出明智的决定。作者考虑了用于评估涂层抗无机垢沉积能力的试验台的设计特点,该试验台可以模拟垢沉积形成的条件,尽可能接近石油生产设施的实际条件。文章介绍了九个涂层样品、两个聚合物样品和一个 St 40G2 钢制样品的台架试验结果。为了评估使用带有内部防腐蚀涂层的油管作为防止水垢沉积措施的有效性,需要进行更多的研究,以评估将涂层与其他防止无机结垢过程的方法结合使用的可能性。因此,作者开发了用于评估油管保护涂层抗无机垢沉积能力的工作台。作者提出了一种动态测试技术,用于评估保护涂层对无机垢沉积的耐受性。根据所提供的结果,得出了在油管上使用保护涂层作为防止在油管内表面形成无机垢沉积的措施的可能性的结论。
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
International Review of Applied Sciences and Engineering
International Review of Applied Sciences and Engineering Materials Science-Materials Science (miscellaneous)
CiteScore
2.30
自引率
0.00%
发文量
27
审稿时长
46 weeks
期刊介绍: International Review of Applied Sciences and Engineering is a peer reviewed journal. It offers a comprehensive range of articles on all aspects of engineering and applied sciences. It provides an international and interdisciplinary platform for the exchange of ideas between engineers, researchers and scholars within the academy and industry. It covers a wide range of application areas including architecture, building services and energetics, civil engineering, electrical engineering and mechatronics, environmental engineering, mechanical engineering, material sciences, applied informatics and management sciences. The aim of the Journal is to provide a location for reporting original research results having international focus with multidisciplinary content. The published papers provide solely new basic information for designers, scholars and developers working in the mentioned fields. The papers reflect the broad categories of interest in: optimisation, simulation, modelling, control techniques, monitoring, and development of new analysis methods, equipment and system conception.
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