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Improving the Effectiveness of Diverters in Hydraulic Fracturing of the Wolfcamp Shale

机译:提高沃尔夫拉姆液压液压液压切削液中的有效性

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A project was initiated in the Wolfcamp shale to reduce the operational complexity and costs associated with hydraulic fracturing.The goal was to use dissolvable diverter to increase fracturing stage lengths while maintaining an average cluster spacing similar to the current completion design without affecting well productivity.To ensure maximum effectiveness,a unique methodology was employed that uses reservoir properties along the lateral to create stage specific diverter strategies.The methodology used to design the diverter strategies begins with understanding well heterogeneity along the lateral.Estimations of minimum in situ stress at each cluster were combined with estimates of pressure increases caused by stress shadow both from previous stages and between treatment clusters to determine fracture breakdown pressures along the lateral.This data was used to selectively segregate the clusters into those that would be treated before diversion and those that would be treated after diversion.Additionally,calculations including hoop stresses and perforation friction were used to ensure pumping pressures remained in a range that increased the probability that clusters designed to take fluid after diverter were not prematurely broken down during the initial pumping treatment.This approach of engineered diversion was applied to three wells located in the Wolfcamp shale of the Midland Basin.The completion incorporated a designed stage length that averaged 315 ft with nine perforation clusters per stage using a single diversion drop.Typical well designs in this field contain stages that are 175 ft in length with five perforation clusters.Thus,this revised design constituted an eighty percent increase in stage length over conventional stage designs.The goal of the treatment was to increase stage length without affecting production.During the treatment of the new engineered diverter stages,there was clear indication that after the first portion of the fracture was completed and diverter had seated on the perforations,the fluid was effectively diverted to virgin rock.This is a positive indication that the stage-specific diverter design was effective.Additionally,when comparing production between the three wells in this study and conventionally stimulated offset wells,there was no appreciable difference in production.This case study represents one of the earliest applications of a fully engineered diversion strategy and will describe how lessons learned during this application can be applied to further improve economics and effectiveness of diverters in horizontal shale plays.
机译:在Wolfcamp Shale中启动了一个项目,以降低与液压压裂相关的操作复杂性和成本。目标是使用可溶解的转向器增加压裂阶段长度,同时保持与当前完成设计类似的平均簇间距,而不会影响良好的生产率。确保最大效率,采用独特的方法,这些方法是沿着横向创建阶段特定的分流策略的储层性能。用于设计分流者策略的方法始于了解沿着横向的良好异质性。在每个群集的最小值率的最小值率开始了。结合来自先前阶段和治疗簇之间的压力阴影引起的压力增加的估计,以确定沿着侧面的断裂击穿压力。该数据用于选择性地将簇隔离成在转移前和将被治疗的人进行治疗的那些D. AversionAly.Aditionally,使用包括环应力和穿孔摩擦的计算来确保泵送压力仍然在增加概率的范围内,这些范围内的簇在初始泵送处理期间没有过早地破碎的群体。工程转移的方法是适用于位于米德兰盆地的Wolfcamp Shale的三个井。完成的完成阶段长度,使用单个导流液滴平均每阶段具有九个穿孔簇的平均315英尺。本领域中的术语井设计包含175英尺的阶段具有五个穿孔簇的长度。本修订的设计在常规阶段设计方面构成了八十百分之八十的阶段长度。治疗的目标是增加阶段长度而不影响生产。造成新工程转向阶段的治疗,有清楚迹象表明,在骨折的第一部分完成后ed和转向器坐在穿孔上,流体有效地转移到原始岩石上。这是一种积极的指示,即阶段特定的转向设计是有效的。加法,当该研究中三个井之间的产生和常规刺激的偏移井之间的产生,没有明显的生产差异。本案例研究代表了完全工程化转移策略的最早应用中的一个,并将描述在本申请中学的经验教训可以应用于进一步提高水平页岩戏剧中的转型器的经济性和有效性。

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