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Water-Based Environmentally Preferred Friction Reducer in Ultrahigh-TDS Produced Water for Slickwater Fracturing in Shale Reservoirs

机译:超高地TDS的水基环保摩擦减速剂为页岩储层中的光滑垫片生产了水

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Currently inverse-emulsion polymers are the most popular friction reducers used in fresh water slickwater fracturing in shale reservoirs.The fluid volumes in fracturing treatments have increased substantially,while water supply has become more of a public concern.Rather than paying to treat and dispose of produced and flowback water,operators would like to reuse it in subsequent stimulation treatments.Produced water,especially from shale plays such as Marcellus and Bakken,is known for its high total dissolved solids(TDS)and high divalent cation content.This poses extreme challenges for current friction reducers because cations hinder the inversion of friction reducers and cause loss of efficiency of friction reduction to below 30%.Treating produced water to the quality suitable for conventional fracturing fluids is time-consuming and often cost-prohibitive. A salt-tolerant,water-based friction reducer was developed to address the challenges of high-TDS produced water.It was tested in a friction loop in a wide variety of produced water types from Bakken,Marcellus,Permian basin and other shale plays at different temperatures and was found to be highly effective.In a produced water sample with TDS over 300,000 ppm and total hardness as CaCO3(TH)over 90,000 ppm as representative water,the new polymer hydrates within 10 seconds and gives a friction reduction profile similar to that of current inverse-emulsion friction reducers in fresh water.The fluid is compatible with other common stimulation additives such as scale inhibitors,biocides,clay stabilizers,surfactants,and breakers.The new friction reducer was also field tested in New Mexico using produced water with higher than 250,000 ppm TDS and 50,000 ppm total hardness as CaCO3,and head-to-head comparison with a conventional friction reducer under field conditions showed significant performance improvement in terms of pumping at much higher rates while maintaining much lower surface treating pressure. This paper will discuss the evolution of the technology and show friction reduction performance in various high-TDS water samples under lab conditions.Successful field test and comparison against conventional friction reducers are presented. The new friction reducer provides the oilfield industry a cost-effective solution of reducing produced water disposal and fresh water demands,thereby ultimately improving environmental impact of well operations.
机译:目前反乳液聚合物是最普遍的摩擦减速剂,用于淡水滑水中的页岩储层。压裂处理中的液体量大幅增加,而供水已经成为公众的更多。反驳,而不是支付治疗和处置生产和流量水,操作员希望在随后的刺激处理中重用它。结果,特别是来自Marcellus和Bakken的页岩伴侣,以其高的总溶解固体(TDS)和高二价阳离子含量而闻名。这提出了极大的挑战对于电流摩擦减速器,因为阳离子阻碍了摩擦减速器的反转,并且导致摩擦效率损失降低到30%以下。制造的水适用于常规压裂液的质量是耗时的,并且通常是成本持久的。开发出一种耐耐水性水性摩擦减速机,以解决高TDS生产的水的挑战。它在来自Bakken,Marcellus,二叠纪盆地和其他页岩扮演的各种产生的水类型中的摩擦循环中测试发现不同的温度,并被发现是高效的。在生产的水样中具有超过300,000ppm的水样和作为CaCO3(Th)以上的CaCO3(Th)以超过90,000ppm作为代表性水,新的聚合物在10秒内水合物,并提供类似于的摩擦减少曲线淡水中电流反乳液摩擦减速剂的摩尔摩擦减速剂。流体与其他常见的刺激添加剂相容,如尺度抑制剂,杀生物剂,粘土稳定剂,表面活性剂和破碎器。新的摩擦减速剂也是在新墨西哥州使用生产的水测试的田间具有高于250,000ppm的TDS和50,000ppm的总硬度作为Caco3,并且在现场条件下与传统摩擦减速器的头部比较显示出显着的效果在保持更高的速率下泵送时的改善,同时保持低得多的表面处理压力。本文将讨论该技术的演变,并在实验室条件下显示各种高TDS水样中的摩擦降低性能。呈现了与传统摩擦减速器的阳性测试和比较。新的摩擦减速机提供了油田行业的成本效益,即减少生产的水处理和淡水需求的解决方案,从而最终改善了井作用的环境影响。

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