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Underbalanced Drilling with Coiled Tubing: A Case Study in Marginal Shallow Wells

机译:带有卷绕管的底层钻孔:边际浅井的案例研究

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This paper describes a recent Directional Coiled Tubing Drilling (DCTD) job that was completed for an independent operator in the Appalachian Basin. The objective was to access target zones identified adjacent to a recently drilled, vertical well using a lateral sidetrack. The target thickness was around 15ft so accurate depth control was critical. It was also considered essential that the entire reservoir section be drilled underbalanced to minimise formation damage. The challenge was to deliver a productive horizontal sidetrack in an effective and cost-efficient manner. The field development strategy required costs to be kept to a minimum, but the use of high-tech equipment was essential to delivering the production improvements. A 3.2 inch DCTD Bottom Hole Assembly (BHA) and a specialised DCTD engineering software package were enabling technologies. A multi-disciplinary approach was adopted to plan and execute the sidetrack. This approach required inputs to the planning process from all stages in delivering the well, which included: 3D seismic, well trajectory planning, drilling engineering, completions. This project was ultimately successful in that a dry hole was re-entered and sidetracked to create a productive well, thereby validating the technology and multi-disciplinary approach of the team. The lessons learned from this operation can be used to optimise the planning of future wells and maximise the value of re-entering marginal wells and fields.
机译:本文介绍了最近在阿巴拉契亚盆地中完成的独立运营商完成的方向线圈钻孔(DCTD)作业。目标是使用横向侧面进入最近钻孔的垂直井附近识别的目标区。目标厚度约为15英尺,因此精确的深度控制是至关重要的。它也被认为是整个储层部分被钻井不平衡以最小化形成损伤。挑战是以有效且经济高效的方式提供生产水平侧面。现场开发战略所需的成本将保持最低,但使用高科技设备的使用对于提供生产改进至关重要。 3.2英寸DCTD底部孔组件(BHA)和专业的DCTD Engineering软件包是启用技术。采用多学科方法来规划和执行侧面。这种方法需要从提供井中的所有阶段进行计划进程,其中包括:3D地震,轨迹规划,钻井工程,完成。该项目最终成功地在重新进入干洞并侧面以创造生产良好,从而验证了团队的技术和多学科方法。从该操作中汲取的经验教训可用于优化未来井的规划,并最大限度地提高重新进入边际井和领域的价值。

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