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Intelligent Completion Technology Enables Selective Injection and Production in Mature Field Offshore South China Sea

机译:智能完成技术使得能够在近海南海的成熟领域选择性注射和生产

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Pressure maintenance support in mature fields where permeability heterogeneity is present requires proper distribution of injected water into the respective zones of interest. This process can be extremely challenging, if no method for allocating the proper amount of water into each zone is available. An operator in the South China Sea, who had initiated a water injection project using legacy single-string two-zone completion technology, found himself in this predicament since no selective control for pressure maintenance had been considered for the project. During the past few years, the application of intelligent completion (IC) technology has increased rapidly. This acceptance has been due primarily to its proven capabilities for reservoir monitoring and corresponding optimization of well performance without well interventions. Historically, the majority of IC applications have been in production wells; however, an increasing number of operators have started adopting IC technology for their injector wells. This paper presents a case study in which IC technology was successfully applied in an offshore field in the South China Sea to provide an efficient water-injection method for optimizing pressure support as well as sweep. The operator selected this technology, as it presented a solution for optimizing the water injection. In addition to eliminating problems experienced with the incapability of the legacy completion technology to monitor water allocation and pressure maintenance for each zone, the IC technology would allow selective well testing for each zone. By evaluating the reservoir properties and characteristics of each zone independently, an intelligent completion would provide another key benefit to the operator, since it would comply with the platform size restrictions for the pumping equipment. The paper will discuss field objectives, the conceptual design, the design obstacles, and the operational challenges experienced during the job execution.
机译:在存在渗透性异质性的成熟领域中的压力维护支撑需要将注入水的适当分布进入其感兴趣的各个区域。如果没有用于将适当量的水分配到每个区域的方法,则该过程可能非常具有挑战性。南海的运营商使用遗留单弦两区完成技术启动了注水项目,发现自己在这个困境中,因为该项目没有考虑对压力维护的选择性控制。在过去几年中,智能完成(IC)技术的应用迅速增加。这种接受主要是由于其经过验证的水库监测能力,并且在没有良好的干预的情况下对井性能进行了相应的优化。从历史上看,大多数IC应用程序都在生产井中;然而,越来越多的运营商已经开始采用IC技术为其注射器井。本文提出了一种案例研究,其中IC技术成功地应用于南海海洋的海上田地,以提供一种优化压力支持以及扫描的高效注射方法。操作员选择了这项技术,因为它提出了优化注水的解决方案。除了消除遗产完成技术的无法行使的问题来监测每个区域的水分配和压力维护之外,IC技术将为每个区域提供选择性良好的测试。通过独立评估每个区域的储层性质和特征,智能完成将为操作员提供另一个关键效益,因为它将符合泵送设备的平台大小限制。本文将讨论现场目标,概念设计,设计障碍和工作执行期间经历的业务挑战。

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