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Zonal Isolation of a Fractured and Gravel Packed Water Producing Zone using an Organically Crosslinked Polymer Sealant: Case Study

机译:使用有机交联的聚合物密封剂的破裂和砾石包装水产生区的区域隔离:案例研究

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Increasing water cut in oil-producing zones is a common issue faced by operators,particularly for mature fields. Currently,where most of the decisions are governed by economics,incurring additional expenses with activities such as handling produced water becomes extremely undesirable. Depending upon the nature of the zone,one effective solution to this issue is chemical isolation. This paper undertakes this issue,discussing a case study of a successful zonal isolation operation using an organically crosslinked polymer sealant in a fractured zone with a gravel pack and screen completion for a reservoir with a subhydrostatic nature. This zone was an initial oil producer in FM-01 sand of the Mangala onshore oil field and had been stimulated in 2011 with a fracture-pack completion. The zone was completed with screens and a gravel pack with 16/30-mesh sand and 5.5-in. screens across the producing interval. During a period of time,the zone(FM-01)began to produce a significant amount of water,resulting in excessive water cut. To mitigate the issue,it was decided to completely isolate the zone using an organically crosslinked polymer system as a porosity fill sealant. When prepared in the appropriate concentration,subject to reservoir temperature,this low-viscosity formulation(40 to 80 cp)turns into a permanent rigid gel with time. The particular challenges of this operation were the presence of high permeability streaks because of stimulation by hydraulic fracturing,extra pore space because the perforated interval lay within the gravel-packed screens,and the subhydrostatic nature of the reservoir. Extensive laboratory testing was performed to optimize the formulation at the desired temperature,measuring the time necessary for the viscosity to begin increasing and the minimum total time necessary to form a rigid gel. The case study discussed in this paper features the successful application of the treatment using the spot-and-squeeze method with coiled tubing(CT)for the isolation of the zone. After allowing the setting time,pressure tests were performed,indicating positive isolation of the zone. After the pressure test,a jet pump was installed,and a drawdown was created to flow the zone. It was observed that production post operation was almost 95% less than production before operation at the same pressure drawdown,indicating approximately 100% zone isolation.
机译:越来越多的油生产区的污染是经营者面临的常见问题,特别是对于成熟领域。目前,大多数决策受经济学的管辖,在经济学中受到处理等活动的额外费用变得极为不受欢迎。根据区域的性质,对此问题的一个有效解决方案是化学隔离。本文进行了这个问题,讨论了在具有碎片包装中使用有机交联的聚合物密封剂使用有机交联的聚合物密封剂的案例研究,该裂缝与砾石包装和具有亚里水解性的储层的筛网完成。该区是Mangala陆上油田FM-01沙子的初始油生产商,并于2011年刺激了骨折包装完成。该区域用屏幕完成,带有16/30型砂和5.5英寸的砾石组。跨越生产间隔的屏幕。在一段时间内,区域(FM-01)开始产生大量的水,导致过量的水切割。为了减轻这个问题,决定使用有机交联的聚合物系统将区域与孔隙填充密封剂完全隔离。当以适当的浓度制备时,经过储层温度,这种低粘度配方(40至80cc)随时间变成永久刚性凝胶。这种操作的特殊挑战是由于液压压裂,额外的孔隙空间刺激,因为穿孔间隔置于砾石填充筛网中,以及储存器的亚中水性性质,因此存在高渗透性条纹。进行广泛的实验室测试以在所需温度下优化配方,测量粘度开始增加所需的时间,并且形成刚性凝胶所需的最小总时间。本文讨论的案例研究特征在于使用带有卷材管(CT)的光斑和挤压方法来实现治疗的成功应用,以便隔离该区域。在允许设定时间之后,进行压力测试,表明该区域的正隔离。在压力测试之后,安装了喷射泵,并产生缩进以流动区域。观察到,在相同压力绘制之前,生产后手术比生产在运行前的生产少于95%,表明约100%区分离。

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