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Plugless Completions Techniques and Evaluation in the Appalachian Basin

机译:Appalachian盆地中的无电泵完成技术和评估

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The modern hydraulic fracturing process in unconventional shales has relied mainly on the use of mechanical isolation techniques(frac plugs)for internal isolation in between multi-cluster perforated frac stages.Significant benefits exist if mechanical frac plugs can be successfully eliminated from well completions.Recent trends of increased lateral lengths and decreased stage spacing are driving up the number of stages per well and the desire to decrease cycle time between completion and production operations,drive the effort for finding an alternative to mechanical plugs.This paper presents two case histories of CNX Resources’wells that utilized various completion techniques to effectively stimulate the laterals without the use of mechanical frac plugs.These’plugless’completions techniques were originally necessitated due to a problem well with a casing patch where standard plug-and-perf completions methods would have required the use of Mechanical Slim Frac Plugs(MSFP)and an undergauge bit for the drillout operation.These MSFPs are designed to pass through internal diameter restrictions and then set and seal properly inside larger diameters.However,after design evaluation,the use of MSFP for internal isolation was found to have some increased challenges associated with the removal of the plug and increased time spent during drillout operations due to the undergauge bit requirement.Three different plugless completions techniques were selected and then evaluated as a replacement for mechanical frac plugs.Two plugless techniques included the use of a particulate diversion material known as polylactic acid(PLA).The other plugless technique required no particulate diversion material.Proppant tracers and gas tracers were used to evaluate the proppant distribution,cluster efficiency,fracture behavior,and gas returns from each of these techniques.Well productivity was compared to offset wells to quantify the overall success of the plugless completions versus standard plug-and-perf completions.Potential for numerous benefits including reductions in completions costs,operational risks,and cycle times exist with the implementation of plugless completions methods.This case study will lay a framework for operators and service companies to practice and/or evaluate different techniques in completing wells without the use of mechanical frac plugs for internal isolation.
机译:在非传统Shales中的现代液压压裂过程主要依赖于使用机械隔离技术(FRAC插头)进行多簇多簇多孔FRAC阶段的内部隔离。如果可以从完井中成功消除机械FRAC插头,则存在显着的益处。横向长度增加和阶段间距下降的趋势正在推动每个井的阶段数量,并且在完成和生产操作之间减少循环时间的欲望,驱动努力寻找机械插头的替代。本文呈现了两种CNX历史利用各种完井技术的资源威尔斯在不使用机械桥架的情况下有效地刺激横向。这些套件技术原本需要由于标准插头和完整方法的套管贴片良好,因此存在很好的问题所需使用机械纤维纤维塞(MSFP)和UNDERGAU用于钻孔操作的GE位。这些MSFPS设计用于通过内径限制,然后在更大的直径内设置和密封。然而,在设计评估之后,发现MSFP用于内部隔离的使用,与...有一些增加的挑战除了欠介点要求时,在钻头操作期间拆除插头和增加的时间。选择不同的无电棉布完成技术,然后评估为机械FRAC插头的替代品。可以使用颗粒状导流材料(称为聚致)的颗粒状导流材料酸(PLA)。其他无需颗粒式导流材料不需要颗粒状导流材料。使用示踪剂和气体示踪剂来评估来自这些技术中的每种技术的支撑剂分布,簇效率,断裂行为和气体返回。与偏移井进行了比较了生产率为了量化无电源插头的总成功与标准插头-And -d-perf完成。对于无需完成方法,存在众多福利,包括降低完整成本,运营风险和循环时间的效益,并且案例研究将为运营商和服务公司奠定框架,以练习和/或评估不同的运营商和/或评估在不使用机械布拉克插头进行内部隔离的情况下完成井的技术。

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