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High-pressure coiled-tubing-string design

机译:高压盘管设计

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High-pressure coiled tubing applications pose many technical challenges to coiled tubing string design: collapse, diametral growth, elongation and wall thinning, to name a few. This paper discusses an optimal string design meethodology for coiled tubing in high pressure applications. The string design methodology uses a sophisticated collapse-prediction model for oval coiled tubing, taking into account the effect of axial load on collapse resistance. It also considers the effect of diametral growth, elongation and wall thinning on the performance of a high-pressure coiled tubing (HPCT) string. By integrating these design parameters into the framework of an optimal string design methodology, this paper presents an effective approach for high pressure coiled tubing string design. The paper also presents examples of HPCT string design. The paper also presents examples of HPCT string design. It is demonstrated that it is possible to design HPCT strings capable of withstanding more than 9000-psi collapse pressure while maintaining the field usability of the HPCT string.
机译:高压连续油管的应用给连续油管柱设计带来了许多技术挑战:塌陷,直径增长,伸长率和壁变薄,仅举几例。本文讨论了高压应用中连续油管的最佳管柱设计方法。考虑到轴向载荷对抗塌陷性的影响,管柱设计方法对椭圆形连续油管使用了复杂的塌陷预测模型。它还考虑了直径增长,伸长和壁变薄对高压连续油管(HPCT)管柱性能的影响。通过将这些设计参数集成到最佳管柱设计方法的框架中,本文提出了一种用于高压连续油管柱设计的有效方法。本文还介绍了HPCT字符串设计的示例。本文还介绍了HPCT字符串设计的示例。已经证明,可以设计能够承受超过9000 psi压塌压力的HPCT弦,同时保持HPCT弦的现场可用性。

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