万宇飞, 刘春雨, 钱欣, 李立婉, 唐宁依, 王文光, 郝铭. 海底管道主动伴热维温技术应用研究进展[J]. 油气储运, 2019, 38(3): 265-272. DOI: 10.6047/j.issn.1000-8241.2019.03.004
引用本文: 万宇飞, 刘春雨, 钱欣, 李立婉, 唐宁依, 王文光, 郝铭. 海底管道主动伴热维温技术应用研究进展[J]. 油气储运, 2019, 38(3): 265-272. DOI: 10.6047/j.issn.1000-8241.2019.03.004
WAN Yu-fei, LIU Chunyu, QIAN Xin, LI Liwan, TANG Ningyi, WANG Wenguang, HAO Ming. Application and research progress of the active heat tracing and insulation technology of subsea pipeline[J]. Oil & Gas Storage and Transportation, 2019, 38(3): 265-272. DOI: 10.6047/j.issn.1000-8241.2019.03.004
Citation: WAN Yu-fei, LIU Chunyu, QIAN Xin, LI Liwan, TANG Ningyi, WANG Wenguang, HAO Ming. Application and research progress of the active heat tracing and insulation technology of subsea pipeline[J]. Oil & Gas Storage and Transportation, 2019, 38(3): 265-272. DOI: 10.6047/j.issn.1000-8241.2019.03.004

海底管道主动伴热维温技术应用研究进展

Application and research progress of the active heat tracing and insulation technology of subsea pipeline

  • 摘要: 海底管道主动伴热维温技术作为被动保温方式的补充,拟在中国海上高黏、易凝原油,深水油气开发中进行应用,中国在自主应用海底管道主动伴热维温技术方面尚处空白,需要在充分比较的基础上,吸收国内外应用案例的先进做法。通过调研分析认为:海底管道主动伴热维温技术可以适应各种水深海域,但目前的应用主要集中在属于浅水区的北海海域。电加热/伴热技术由于适应性强、热效率高,特别是间接电伴热技术,将成为取代热流体伴热的重要选择。间接电伴热技术较直接电加热技术效率高、安全稳定,可实现长期运行,更适合海上油气物流的输送。集肤效应电伴热技术作为间接电伴热技术的一种,由于其安全性强、热效率高、沿线温度分布均匀且可监控,适合用于长距离海底管道的伴热维温,是今后主要的发展方向。中国海底管道主动伴热维温技术需要在当前国家对重要装备国产化大力支持的背景下,开展横向和纵向对比,加大应用研究力度,突破接线盒处连接点的可靠性等关键问题,早日实现海底管道集肤伴热技术国产化,为中国海上油气田的可持续发展提供技术支撑。

     

    Abstract: The active heat tracing and insulation technology of subsea pipeline, as a supplement to the passive thermal insulation, will be applied to the development of offshore high viscosity and low pour-point oil and deep-water oil and gas in China. At present, however, the application of independently developed active heat tracing and insulation technology of subsea pipeline is still blank in China. Therefore, it is necessary to analyze and compare domestic and foreign application cases and learn the advanced practices from them. It is indicated from the investigation and analysis that the active heat tracing and insulation technology of subsea pipeline is suitable for the sea areas in different depths, but currently its application mainly focuses on the North Sea which is shallow-water area. Due to its strong adaptability and high heat efficiency, electric heating/heat tracing technology, especially the indirect electric heat tracing technology will certainly replace the hot fluid heat tracing technology. Compared with the direct electric heating technology, the indirect electric heat tracing technology is more efficient, stabler and safer and can be used for long-term operation, so it is more suitable for offshore oil and gas transportation. As a kind of indirect electric heat tracing technology, the skin-effect electric tracing is the main development direction in the future for it is of high safety and heat efficiency and its temperature along the pipeline is uniformly distributed and controllable, so it is suitable for the heat tracing and insulation of long-distance subsea pipelines. In the background that the China's government provides powerful support for important equipment localization, it is necessary to carry out horizontal and vertical comparisons on domestic active heat tracing and insulation technology of subsea pipeline and intensify its applied research to break through the key issues (e.g. the reliability of the connection point at the junction box) so as to realize the localization of skin-effect heat tracing technology of subsea pipeline as soon as possible and provide technical support for the sustainable development of offshore oil and gas fields in China.

     

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