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Successful Implementation of High Viscosity Friction Reducer in Marcellus Shale Stimulation

机译:Marcellus Sheale刺激的高粘度摩擦减速器的成功实施

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Throughout multiple shale plays,high viscosity friction reducers(HVFRs)have successfully placed more proppant mass with lower treating fluid volume; thus,the industry is accelerating adoption of these treating fluids.Previous published studies have included treatments in Bakken shale and Permian Basin formations.The characteristics of the Marcellus shale make it particularly beneficial to minimize water and gel injection into the formation.At the same time,operational constraints related to smaller footprint and pad sizes in the Marcellus region make it beneficial to reduce gel hydration equipment on location.In spite of these potential benefits,application of high viscosity friction reducers has only recently begun in the Marcellus region.One factor delaying the introduction of HVFRs into the Northeast has been the challenging waters and brines often used in treatments.This study documents the successful introduction of a brine tolerant,high viscosity friction reducer with multiple operators in the Marcellus region.Marcellus operators compared several different friction reducer chemistries through field trials on multiple pads.Based on measurements of surface treating pressure and proppant placement,an optimum fluid system was selected that is effective in a range of water qualities and allow increased pump rate.The friction reducer was also compared to conventional gel technology based on the same method.The brine tolerant friction reducer was found to be an effective replacement for linear gel fluids and allowed reduction of equipment on location.A brine tolerant,high viscosity friction reducer enabled treatments to be placed with increased sand loadings,higher pump rates,and decreased surface treating pressures.The fluid system was able to work with a variety of water conditions,including brines having more than 30,000 ppm chlorides.In one case the new fluid system allowed operations to entirely move away from gel chemistry and surface hydration equipment.The study presents measured results during the frac on one of the first applications of a high viscosity friction reducer in Marcellus shale treatment.
机译:在各种页岩中,高粘度摩擦减速剂(HVFRS)已成功放置更多的支撑剂质量,具有较低的处理液体体积;因此,该行业正在加速通过这些治疗流体的采用。不可出版的研究包括在Bakken Shale和Permian盆地形成中的治疗方法。Marcellus Shale的特点使其特别有利于将水和凝胶注入到形成中。 ,与Marcellus Region中较小的占地面积和垫尺寸相关的操作约束使其有利于减少凝胶水合设备的位置。尽管这些潜在的益处,但高粘度摩擦减速剂的应用最近仅在Marcellus地区开始了。一个因子延迟在东北的HVFR引入常用于治疗的挑战性水域和盐水。本研究文件在Marcellus Region中成功引入了盐水耐受,高粘度摩擦减速机,在Marcellus Region.Marcellus算子比较了几种不同的摩擦减速剂化学物质通过多个pads.bas的现场试验在表面处理压力和支撑剂放置的测量中,选择了一种在一系列水质中有效的最佳流体系统,并允许增加的泵率。与基于相同方法的常规凝胶技术也将摩擦减速器进​​行比较。盐水发现耐受摩擦减速剂是线性凝胶流体的有效替代品,并且允许减少设备的设备。盐水耐受,高粘度摩擦减速器的使能处理能够增加的砂载,更高的泵率和表面处理压力降低。流体系统能够与各种水条件一起使用,包括氯化物超过30,000ppm的盐水。在一例的情况下,新的流体系统允许操作以完全远离凝胶化学和表面水合设备。研究表明了测量结果FRAC对Marcellus页岩治疗中高粘度摩擦减速器的首批应用之一。

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