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Trend for Offshore Pipeline Installation Methodologies as a Result of Evolution in the Oil Gas industry

机译:石油和天然气行业进化导致海上管道安装方法的趋势

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The objective of the paper is to present the manner in which the Oil & Gas Industry has evolved and how this evolution has impacted the trend in pipeline installation methodologies. The content for the paper is based on authors’ personal experience within the various installation contractors that he had worked for and observation in the industry spanning 4 decades, as well as research on the evolution of the design of production facilities and how this evolution has impacted the various installation methodologies. The research pertains to both on-line research as well as discussions with various experts working for the various installation contractors, including authors’ employer. The findings from the study show that changes in design codes have been made to cope with increasing demands for deep-water facilities. The changes in design code has allowed for pipelines to be installed deeper, in particular for conventional S-Lay methods, as well as pave the way for other installation methodologies, such as Reel-Lay. Other novel methods have also been invented, such as the Controlled Depth Tow Method, although this method had evolved not as a result of the changes in code but innovative ideas that allow for deep-water installation with little impact on pipeline stresses. The findings from the study shows that pipelines are being installed in deeper waters as a result of improvement in design such as shorter stinger radius, which allows for pipeline to leave the lay vessel almost vertically, increased lay tension capacities, advanced welding and NDT techniques and so on. Changes in design codes have contributed to the accomplishment of deep-water pipe-laying. In addition, the trends for pipeline installation are discussed, as well as gaps and opportunities for future development.
机译:本文的目的是提供石油和天然气行业发展的方式以及这种进化如何影响管道安装方法的趋势。本文的内容基于作者在各种安装承包商内的个人经验,他在跨越4年的行业工作和观察,以及对生产设施设计的演变以及这种进化影响的研究各种安装方法。该研究涉及在线研究以及与为各种安装承包商工作,包括作者雇主的各种专家的讨论。研究结果表明,设计代码的变化已经提出了对深水设施的日益增长的需求。设计代码的变化允许管道更深,特别是对于传统的S-LAT方法,以及为其他安装方法(例如reel-late)铺平道路。其他新颖的方法也已经发明了,例如受控深度丝束方法,尽管该方法不作为代码的变化而发展,但是创新思想,允许深水安装几乎没有影响管道应力。研究结果表明,由于诸如较短的刺刀半径等设计的改善,管道正在更深的水域中安装,这允许管道几乎垂直地离开敷设船,增加张力容量,先进的焊接和NDT技术和NDT技术很快。设计代码的变化有助于实现深水管道铺设。此外,讨论了管道安装的趋势,以及未来发展的差距和机会。

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