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Case Study: Successful Application of a Novel Conformance Treatment in an Extended Reach Horizontal Well in the Al Shaheen Field, Offshore Qatar

机译:案例研究:在Al Shaheen领域的延长覆盖水平井中成功应用新型一致性处理,海上卡塔尔

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The thin and laterally extensive Al Shaheen reservoirs are developed with extended reach horizontal wells and large-scale water injection, which over the last decade has proved to be a proficient and environmentally favorable recovery scheme. This paper describes how injection water short circuiting between two horizontal wells in excess of 20,000 ft was eliminated with a conformance treatment without the necessity of a costly and operationally risky well intervention. Traditionally, reservoir management in terms of injection or production profile modification has been achieved with rig-based work-over operations applying mechanical solutions such as cement or isolation straddles. Work-over operations utilizing drilling rigs are, however, expensive, pose inherent operational risks and delay the implementation of the ongoing development plans. When water injection was recently commenced in a well taking part of an existing line drive pattern, an immediate pressure and watercut response was observed in the adjacent producer. Attempts were made to mitigate the effect of the communication, but water injection eventually had to be ceased to allow sustainable flow from the production well. The very pronounced response in the producer suggested that short circuiting was occurring through a fracture providing conductivity several orders of magnitude higher than the prevailing matrix conductivity.A comprehensive multi-disciplinary review of static and dynamic data lead to the assessment that the fracture communication could be eliminated utilizing a conformance treatment and following laboratory testing and design, a crystalline superabsorbent copolymer was pumped from a stimulation vessel as part of an intervention and rig-less operation. After the conformance treatment, injection was resumed with no adverse effects on the performance of the adjacent producer.
机译:薄型和横向广泛的Al Shaheen储层是开发的,延长了水平井和大规模的注水,这在过去十年中被证明是一项熟练和环保的恢复方案。本文介绍了如何在两种水平井之间的喷射水短路,以一致性的治疗消除了一致性的治疗,而无需昂贵和操作风险的井干预。传统上,通过钻机的重新研磨方法实现了注射或生产型材修改方面的水库管理,该操作采用了水泥或隔离跨界等机械解决方案。然而,利用钻井钻机的工作运营是昂贵的,构成内在的运营风险和延迟实施正在进行的发展计划的实施。当在采用现有线路驱动模式的良好部分中开始水注射时,在相邻生产商中观察到立即压力和水剖反答。尝试减轻通信的效果,但最终进入水注入以允许从生产井中的可持续流动。生产者中的非常明显的响应表明,通过骨折提供短路,提供电导率高于主要的矩阵电导率的数量级。对静态和动态数据的综合多学科审查导致评估骨折通信可能是利用一致性处理和后续实验室检测和设计消除,将结晶超吸收性共聚物从刺激容器中泵送,作为介入和钻头操作的一部分。在符合治疗后,恢复注射对相邻生产者的性能没有不利影响。

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