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Channel Fracturing - A Paradigm Shift in Tight Gas Stimulation

机译:渠道压裂 - 紧身刺激的范式转变

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The hydraulic Channel Fracturing technique relies on the engineered creation of a network of open channels within the proppant pack, which provides for highly conductive paths for the flow of fluids from the reservoir to the wellbore. This paper provides a comprehensive summary of the implementation of this technique in ultra-low permeability, gas-bearing formations. The Lance formation in the Jonah field near Pinedale, Wyoming was selected for this study. This formation comprises fluvial sand bodies with 0.0005 to 0.05 mD permeability and 35 to 55percent gas saturation. The formation requires hydraulic fracturing for economic production. Key historical issues for the stimulation of this formation using gelled fluids and sand as proppant are limited fluid recovery and consequential formation and fracture conductivity impairments. Slick-water treatments have rendered moderate gains in production mainly in low-prospect zones with some occurrence of near-wellbore screen-outs. Moderate increases in production from using ceramic proppants have been gained at the expense of significant increase in stimulation costs. Hydrocarbon production, treating pressure and fracturing fluid recovery data from a thirteen-well campaign in the Jonah field are summarized in the manuscript. Results indicate that the implementation of the channel fracturing technique increased initial gas production and estimated recovery over conventional fracturing methodologies. Positive features that were also observed during this campaign such as reduced net pressure increase estimates from pre- and post-frac shut-in pressure measurements, reduced tendency for vertical fracture growth and elimination of near-wellbore screen-outs are also reported and discussed. It is concluded that the Channel Fracturing technique is a viable alternative to conventional fracturing methods for more efficient and effective stimulation of complex tight gas formations.
机译:液压通道压裂技术依赖于支撑包装内的开放通道网络的设计创建,这为从储存器流到井筒的流体流动提供了高导电路径。本文提供了在超低渗透性,燃气地层中实现该技术的全面概述。选择了亨纳田的云层,怀俄明州靠近Pinedale,为这项研究选择了。该形成包括氟砂体,渗透为0.0005至0.05 md渗透性,35至55至55至55%。该地层需要液压压裂进行经济生产。使用凝胶化流体和砂作为支撑剂刺激这种形成的关键历史问题是流体回收和相应的形成和断裂电导率损伤有限。光滑水处理在生产中具有适度的收益,主要是低前景区域,近期井眼屏幕外。使用陶瓷支撑剂的生产中的适度增加,牺牲了刺激成本的显着增加。在叙述中总结了来自Jonah领域的十三个井运动的碳氢化合物生产,治疗压力和压裂流体恢复数据。结果表明,通道压裂技术的实施增加了初始气体生产和估计恢复常规压裂方法。还报告并讨论了在此次活动中减少净压力增加的净压力增加估计,诸如降低的净压力升高的估算估算,并且讨论了垂直断裂生长和消除近井眼屏幕外的倾向的估计的阳性特征。得出结论,通道压裂技术是传统压裂方法的可行替代方案,用于更有效和有效地刺激复杂的紧密气体形成。

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