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An Innovative Offshore Fracturing Campaign for a Mature Oil Field: Case Study Offshore West Africa

机译:成熟油田的创新海上裂缝运动:案例研究海上非洲

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Many of the offshore oil reservoirs along the West African coast are maturing with substantial reserves still in place; solid technical and operational solutions are required to maximize their value. The field was initially developed in the late 1960’s and has since been under water injection and gas lift. The reservoir is composed of laminated sand, silt, and shale sequences, all of varying reservoir quality. As a result of the widely ranging permeability and poor vertical permeability, hydraulic fracturing was the technology chosen to unlock the remaining reserves. Operationally, “hard rock” hydraulic fracturing is not commonplace in offshore West Africa. Therefore, procuring the proper equipment, materials, and skilled personnel was the one of the biggest challenges. To alleviate the high cost of functioning with a drilling rig, an innovative rig-less setup was devised for a 9 well campaign. The hydraulic fracturing method employed was conventional multi-zone fracturing using composite bridge plugs. Although very common in onshore, tight gas developments, the challenge was to properly apply it in an offshore project. Milling composite bridge plugs in under-pressured oil wells initially proved to be extremely challenging, while scale deposition made slickline well interventions very problematic. The project has yielded numerous lessons learned and technical contributions: 1. While the learning curve was steep, rigless “hard rock” fracturing techniques were successfully applied in offshore West Africa, thus being one of the few examples. This could have direct impacts on the future of the many offshore oil and gas fields. 2. Consistent successful well interventions with slickline and coiled tubing proved to be the highest risk operation and often the root of most operational problems. 3. The HSE risks using a floating barge and catenary coiled tubing system are key points which need to be considered when planning a rig-less fracturing campaign.
机译:沿着西非海岸的许多海上石油储层正在成熟,仍然存在实质性储备;需要坚实的技术和操作解决方案来最大限度地提高其价值。该领域最初在1960年代后期开发,此后一直在注水和燃气升力。储存器由层压砂,淤泥和页岩序列组成,所有不同的储层质量。由于广泛的渗透性和垂直渗透性差,液压压裂是选择解锁其余储备的技术。在操作上,“硬岩”水力压裂在海上西非不普遍。因此,采购适当的设备,材料和技术人员是最大的挑战之一。为了缓解与钻井钻机的高成本,设计了一个创新的钻机设置,为9个井展活动设计。采用的液压压裂方法是使用复合桥塞的常规多区压裂。虽然在陆上陆上常见,燃气发展紧张,挑战是在海上项目中正确应用它。铣削复合桥塞在压力下的油井中最初被证明是极其具有挑战性的,而规模沉积使得Slickline好的干预非常有问题。该项目已经产生了众多经验教训和技术贡献:1。虽然学习曲线陡峭,但是在海上非洲的人们成功地应用了严格的“硬岩”压裂技术,因此是少数例子之一。这可能会对许多海上石油和天然气领域的未来产生直接影响。 2.一致的成功良好的干预措施,利用光滑线和盘绕管道被证明是最高的风险运行,并且通常是最具操作问题的根源。 3.使用浮动驳船和凸起的卷绕管系统的HSE风险是在规划减少钻井平台的断裂运动时需要考虑的关键点。

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