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Optimizing the Most Common CT Operation in the US: Findings From More Than 60 Composite Frac Plug Underbalanced Milling Operations in the Piceance Basin

机译:优化美国最常见的CT运行:来自Piceance盆地的60多个复合FRAC插头底层铣削操作的调查结果

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The advent of multi-zone stimulation techniques has created an increasing need for zonal isolation devices, such as composite bridge and frac plugs. Bringing the well on to production requires that these devices be removed from the wellbore effectively and in a timely fashion. Milling composite frac plugs (CFP) using coiled tubing (CT) and positive displacement motors (PDM) is one of the most common and effective methods in the industry. Where formation properties allow, overbalanced CFP milling is routinely performed with high degrees of success. However, underbalanced milling operations that use nitrogen as a circulation aid pose additional challenges. Further, efforts to optimize the technique are often limited by the numerous parameters involved which reduce the repeatability of successful results. This paper presents the lessons learned from over sixty underbalanced CFP milling operations performed in the Piceance Basin. The results shown are uniquely relevant due to the fact that the operations involved in this study were performed within the same field, using the same type and size of PDM, mill, CFP, and CT. Very rarely can all these variables be kept as constants. Additionally, the same core field personnel were used over a one year period. This elevated level of consistency allows the author to focus on key controllable CT variables of the operation. The paper will review the optimization and results of: two-phase flow rates, PDM stalling, milling profiles and optimum wellhead pressures. Reviewing the field data has resulted in improved operational efficiencies by empirically developing two concepts: the "milling profile" and the "optimum milling wellhead pressure". These improvements will be discussed in the paper.
机译:多区刺激技术的出现为诸如复合桥和布鲁克塞等地区的隔离装置产生了越来越多的需求。将良好的生产备受良好要求这些设备可有效地从井筒中拆除,并及时地从井筒上移除。使用盘绕管(CT)和正排量电机(PDM)铣削复合FRAC插头(CFP)是该行业中最常见有效的方法之一。在形成性能允许的情况下,超平衡的CFP铣削经常使用高度的成功进行。然而,利用氮气作为循环辅助的不平衡铣削操作构成了额外的挑战。此外,优化该技术的努力通常受到涉及的许多参数的限制,这减少了成功结果的可重复性。本文介绍了在Piceance盆地中进行的超过六十个不平衡的CFP铣削操作中汲取的经验教训。所示结果由于本研究中涉及的操作在同一领域内进行,使用相同类型和大小的PDM,轧机,CFP和CT。非常少数所有这些变量都可以保留为常量。此外,相同的核心现场人员在一年内使用。这种升高的一致性允许作者专注于操作的关键可控CT变量。本文将审查优化和结果:两相流量,PDM停滞,铣削曲线和最佳井口压力。通过经验开发两个概念,审查现场数据导致了改善的运营效率:“铣削型材”和“最佳铣削井口压力”。这些改进将在论文中讨论。

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