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INCREASING THE APPLICATION REALM OF SOLID EXPANDABLE TECHNOLOGY

机译:增加固体可扩展技术的应用领域

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Technology that boasts versatility is indicative of true innovation. Take for example solid expandable tubulars. Since 1999, upstream operators have successfully used solid expandable tubulars with over 900 installations worldwide. The success of these tubular systems to mitigate wellbore challenges and casing problems has prompted pipeline operators to consider the transfer of solid expandable technology to pipeline repairs and restorations. A key value proposition that initiated the pipeline industry's attraction consists of the technology's permanent, steel, pipe-in-pipe ability to improve structurally at-risk or derated pipelines with only minimal ID loss. Although local distribution companies have used liner technology extensively in settings where lines operate at much lower pressure than most transmission lines, the use of steel lining is new. The concept is simple: insert a smaller pipe inside a larger pipe and, using pressure, drive a specially designed mandrel through the smaller pipe to accomplish a controlled expansion to fill the annular space between the two. This less-intrusive process is a "trenchless" solution to replace and repair sections thinned by corrosion to maintain maximum throughput and reinforce pipelines against external loads to prevent buckling or collapse from soil movement and shifting formations. Such an approach enables pipeline restoration with minimum disruptions due to repairs-a significant benefit in heavily congested areas and geologically sensitive environments. Research indicates that prime candidate applications of solid expandable technology exist in situations where traditional excavate-and-repair techniques are difficult to use, cost prohibitive, or would disrupt public movement. In such settings, the two broad categories solid expandable technology would address most effectively are capacity restoration and anomaly repair. This paper will discuss conventional solid expandable tubular technology and the legacy it provided to transition to pipeline applications. Expansion value and application will be discussed in addition to lab and surface testing and development-to-date. In addition, this paper will propose the next steps needed to transition the technology to a viable pipeline rehabilitation method.
机译:拥有多功能性的技术表明了真正的创新。采用固体可膨胀管。自1999年以来,上游运营商已成功使用固体可扩展管,全球拥有900多种安装。这些管状系统的成功来缓解井眼挑战和套管问题,提示了管道运营商,以考虑将可扩展技术转移到管道维修和修复。启动管道行业吸引力的关键价值主张包括该技术的永久性钢管管道管道能力,可在结构上改善风险或降低管道,只有最小的ID损失。虽然本地分销公司在线在线路运行的情况下广泛使用衬里技术,但是使用钢衬里的使用是新的。该概念简单:在较大的管道​​内插入一个较小的管道,使用压力,通过较小的管道驱动专用设计的心轴来实现控制的膨胀以填充两者之间的环形空间。这种较少侵入性的过程是一种“挖沟”解决方案,可以通过腐蚀更换和修复切片,以保持最大的产量,并加强管道上的外部载荷,以防止来自土壤运动和移位的屈曲或塌陷。这种方法使管道恢复能够最小的中断,因为修理了大量拥挤区域和地质敏感环境的显着益处。研究表明,在难以使用的传统挖掘和修复技术的情况下,存在可固体可扩展技术的主要候选应用,其成本禁止或者会破坏公共运动。在这种环境中,两种广泛类别的可扩展技术将最有效地解决容量恢复和异常修复。本文将讨论传统的固体可扩展管技术及其提供给流水线应用的传统。除了实验室和表面测试和开发到日期之外,还将讨论扩展值和应用程序。此外,本文提出了将技术转变为可行管道康复方法所需的下一步。

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