在科威特某油田进行酸增产作业时,使用实时混合连续油管上的电子多分支工具成功修井——案例研究

F. Bastaki, Mohammed Al Matar, Mizan Omar, Jassim Barki, M. Jamal, Fayez Al-Mutairi, S. El-Aziz, Zakaria Albahar, Mehanna Al-Mehena, Nakul Khandelwal, Sapna Chawla, Rishi Gaur, Mohammad Alkreebani, Joshua Travesso
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引用次数: 1

摘要

多边技术为油气运营商带来了诸多好处,包括通过减少井场建设工作来降低油田开发成本,增加储层接触从而提高储层产量。为了充分利用这些复杂的井,必须对它们进行适当的增产。在科威特,作业者钻完一口六支腿的四级多分支井,下套管并固井,目标是Tuba上部和下部两个不同的地层。这提供了多种生产选择,并且可以灵活地从下部或上部分支井甚至全部六个分支井进行生产,以帮助降低钻水平井或定向井的风险。因此,多边技术可以积极地改变边际油田储量的经济可行性。利用多边技术的优势,需要采用多学科的方法来选择合适的井结构、完井设计、再入井的灵活性和生产寿命。在这口IV级分支井的修井作业中遇到了一些挑战,例如所有分支井都存在油基泥浆(OBM),在钻井过程中遇到了一个分支井的断层,以及页岩含量高可能导致连续油管(CT)卡钻和回液损失。为了降低各种风险,选择了实时混合电缆CT和电动多边工具。该解决方案包括在连续油管管柱中安装混合光纤和电缆,以及配备各种传感器的模块化底部钻具组合(BHA)。电控分度工具、倾角传感器、工具面传感器、井下摄像头、液压关节和脉动增产工具作为BHA的一部分,实现了地面的实时诊断和动态控制,成功进入并刺激了所有分支腿。这种配置有助于识别每个不同的分支,而不需要标记每个分支的底部。本文重点介绍了针对分支井干预开发的特定工具配置的应用、策略和效益,这些工具配置能够对所有下油管分支井进行增产。这是一个特别具有挑战性的作业,因为其中一个分支的页岩导致了几次连续油管卡钻,通过使用底部钻具组合中的实时摄像机,降低了井眼坍塌的可能性。本文包括解决适当的工具选择,确认横向进入,静水压力平衡,井眼稳定性和酸设计的策略。它还探讨了为上Tuba油田增产计划的新的协同策略和工作流程的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Successful Intervention into a Six-Leg Multi-Lateral Well Using an Electrical MultiLateral Tool Deployed on Real-Time Hybrid Coiled Tubing for Acid Stimulation of a Kuwait Field - A Case Study
Multilateral technology offers multiple benefits to oil and gas operators, including lowering the field development cost by minimizing wellsite construction work and increasing reservoir contact leading to enhanced reservoir production. To gain full advantage of these complex wells, they must be stimulated properly. The operator in Kuwait drilled, cased, and cemented a six-leg, level IV multilateral well targeting two different formations, the upper and lower Tuba. This provided various production options and the flexibility of taking production from either the lower or upper laterals or even all six laterals to help mitigate the risks of drilling horizontal or directional wells. As such, multilateral technology can positively transform the economic viability of reserves in marginal fields. Exploiting the advantages of multilateral technology requires a multi-disciplinary approach to select appropriate well structure, completion design, re-entry flexibility, and production longevity. Intervention in this level IV multilateral well presented several challenges, such as Oil Based Mud (OBM) in all the laterals, encountering a fault in one of the laterals while drilling, and high shale content that can lead to stuck Coiled Tubing (CT) and the loss of fluid returns. Real-time hybrid cable CT was chosen along with an electric multilateral tool to mitigate the various risks involved. This solution includes a hybrid fiber optic and electrical cable installed in the CT string and a modular Bottom Hole Assembly (BHA) equipped with various sensors. An electrically controlled indexing tool, inclination sensor, tool- face sensor, downhole camera, hydraulic knuckle joint, and pulsating stimulation tool were used as part of the BHA to enable real-time diagnostics and dynamic controls from the surface to successfully enter and stimulate all the lateral legs. This configuration helped identify each different lateral without the need to tag the bottom of each lateral. The paper focuses on applications, strategies, and benefits of specific tool configurations developed for multilateral well intervention, enabling the stimulation of all the lower Tuba laterals. This was a particularly challenging operation due to shale in one of the laterals causing several instances of stuck CT with the possibility of a collapsed hole mitigated by using the real-time camera in the BHA. This paper includes strategies that address proper tool selection, confirmation of lateral entry, hydrostatic pressure balance, borehole stability, and acid design. It also explores the potential of new, synergistic strategies and work processes planned for stimulation of the upper Tuba field.
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