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Cementing Through Capillary Tubing to Meet Regulatory Requirements: A Novel Approach for Plug and Abandonment

机译:通过毛细管巩固毛细管,以满足监管要求:一种用于插头和遗弃的新方法

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Capillary tubing has traditionally been used for various downhole chemical treatments applied to enhancing fluid loading, treating corrosion and scale buildup, and preventing paraffin and emulsion formation. Capillary tubing provides an advantage over coiled tubing due to its lighter weight, smaller footprint, mobile structure, faster running speeds, and more economical costs. One drawback however, is the increased friction pressures when pumping abrasive fluids. Typical capillary tubing is sized from ? to ? in. OD versus the more common coiled tubing, which ranges from 1 to 3 ? in. OD. Therefore, the use of capillary tubing for cementing operations has not been considered until recently. This paper will feature a project in Australia where a capillary unit was employed to abandon a well with cement, while concurrently installing downhole pressure gauges to comply with local regulations. The cement design criteria along with two case histories will be described, and lessons learned will be evaluated. Data that has been collected through the various jobs will demonstrate that current simulation software will need to be modified to match pressure outputs witnessed in the field. A comparison of simulated versus actual job pressure data has shown as much as a 70% friction reduction in actual pressure readings. The witnessed pressure values are shown to be consistent over several operations; therefore a theoretical correlation can be drawn so more realistic values can be simulated in the future. Additionally, slurry designs which were proven successful and operational considerations for improved job quality will be discussed. This paper will discuss two case histories in which capillary tubing was used for the first time in Australia. Methodology, limitations, and future improvement possibilities will be discussed in detail throughout this paper.
机译:传统上,毛细管的管道用于各种井下化学处理,其应用于增强液体载荷,治疗腐蚀和规模累积,并防止石蜡和乳液形成。毛细管管道由于其较轻的重量,较小的占地面积,移动结构,更快的运行速度和更经济的成本,提供了在卷绕管上的优势。然而,一个缺点是泵送磨料时的增加的摩擦压力。典型的毛细管尺寸为尺寸?到 ?在。od与更常见的盘绕管,哪个范围为1到3?在。od。因此,直到最近,尚未考虑使用毛细管胶卷管的固井操作。本文将在澳大利亚设有一个项目,其中采用毛细管单元放弃井水泥,同时安装井下压力表以符合当地法规。将描述水泥设计标准以及两种情况历史,并评估经验教训。通过各种作业收集的数据将证明,需要修改当前的仿真软件以匹配现场目睹的压力输出。模拟与实际工作压力数据的比较显示了实际压力读数的70%摩擦降低。目睹的压力值显示在几种操作上是一致的;因此,可以绘制理论相关性,因此将来可以模拟更现实的值。此外,还将讨论被证明的浆料设计成功,并进行改善的工作质量的操作考虑。本文将讨论两种情况历史,其中毛细管在澳大利亚首次使用。本文将在本文中详细讨论方法,限制和未来的改善可能性。

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