用于高压裸眼层间隔离和增产的金属膨胀环空密封系统

Yosafat Esquitin, B. Schwanitz, G. Moreno, Natalia Avella, O. Henao
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引用次数: 1

摘要

金属膨胀环空密封系统作为一种有效的高压隔离方法,在哥伦比亚Foothills盆地的6”裸眼泥岩地层中进行了一次4.5”完井作业。事实证明,历史上很难实现有效的隔离。作业者选择了具有旋转能力的固体金属膨胀密封系统作为环空屏障,以实现首选的无水泥完井。密封系统需要装配在全井径尾管上,以便在较坏的冲蚀情况下,能够提供强大的高压密封部署。该系统的部署包括一个位于泥岩带上方的环空屏障和一个位于泥岩带下方的环空屏障。在与作业者进行了周密的作业计划后,完成了旋转完井作业,没有发生任何事故。为了实现压力完整性以设置金属可膨胀环空屏障,采用了一个球座密封系统,使系统关闭并设置环空屏障。在将该井投入管道后,客户的预期产量比之前的井增加了52%。由于有效的封隔和有效的增产,取得了成功的效果。本文概述了新型金属环空密封系统在4½”完井中作为一种有效的高压隔离方法的应用、设计、实施和结果,该方法适用于裂缝性砂岩和泥岩地层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metal Expandable Annular Sealing Systems for High Pressure Open Hole Zonal Isolation and Stimulation
Metal expandable annular sealing systems were used in a 4 ½" completion as an effective high-pressure isolation method inside 6" open hole mudstone formation in the Foothills Basin of Colombia. Effective isolation proved to be historically difficult to achieve. The operator was approached with a solid metal expandable sealing system with rotation capabilities as an annular barrier for a preferred cementless completion. The sealing system needed to be assembled on a full-bore liner able to deliver robust deployment with a high-pressure seal in a worse case washed-out scenario. The deployment of the system consisted of one annular barrier placed above and one annular barrier placed below the mudstone zone. Following careful job planning with the operator, the rotationally capable completion was deployed without any incidents. To achieve pressure integrity to set the metal expandable annular barriers, a ball seat sealing system was incorporated to allow the system to be closed and the annular barriers to be set. After putting the well onto the pipeline, the client recorded a 52% increase in their expected produc-tion from previous wells. Successful results were accomplished as effective isolation was achieved and enhanced production was obtained because of the effective stimulation. This paper overviews the appli-cation, design, implementation and results of the use of new metal annular sealing systems in a 4 ½" completion as an effective high-pressure isolation method inside a 6" open hole, drilled in fractured sandstone and mudstone formations.
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