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Remediation of Proppant Flowback—Laboratory and Field Studies

机译:支撑剂回流的修复—实验室和现场研究

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This paper presents the results of laboratory studies and field case histories of a remedial treatment technique using a low-viscosity consolidation fluid system that is placed into the propped fractures by coiled tubing (CT) or jointed pipe coupled with a pressure pulsing tool. The treatment fluids are designed to provide consolidation (for previously placed proppant) near the wellbore to glue the proppant grains in place without damaging the permeability of the proppant pack. Laboratory flow testing indicates that the proppant pack in a fracture model under closure stress only requires low-strength bonds between proppant grains to withstand high production flow rates. The consolidation treatment transforms the loosely packed proppant in the fractures and the formation sand close to the wellbore into a cohesive, consolidated, yet highly permeable pack. Field case histories are presented and the treatment procedures, precautions, and recommendations for implementing the treatment process are discussed. One major advantage of this remedial treatment method is the ability to place the treatment fluid into the propped fractures, regardless of the number of perforation intervals and the length of the perforated intervals without mechanical isolation between the intervals. The fluid placement efficiency of this process makes remediation economically feasible, especially in wells with marginal reserves.
机译:本文介绍了使用低粘度固结流体系统的补救措施处理技术的实验室研究结果和现场案例历史,该系统通过连续油管(CT)或连接管与压力脉冲工具一起放置在支撑裂缝中。处理液设计用于在井眼附近提供固结(用于先前放置的支撑剂),以将支撑剂颗粒胶合在适当的位置,而不会破坏支撑剂包装的渗透性。实验室流动测试表明,在闭合应力下,裂缝模型中的支撑剂充填仅需要支撑剂颗粒之间的低强度结合即可承受较高的生产流量。固结处理将裂缝中松散堆积的支撑剂和靠近井眼的地层砂转化为粘性,固结但高渗透性的填料。介绍了现场案例的历史,并讨论了处理程序,预防措施和实施处理过程的建议。这种补救性治疗方法的一个主要优点是能够将处理液放置在支撑的裂缝中,而不管穿孔间隔的数量和穿孔间隔的长度如何,而无需在间隔之间进行机械隔离。此过程的流体注入效率使修复在经济上可行,尤其是在具有边际储量的井中。

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