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A Novel Nondamaging Friction Reducer: Development and Successful Slickwater Frac Applications

机译:一种小说新的Nondamaging摩擦减速机:开发和成功的Slickwater FRAC应用

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Friction reducers are commonly used in slickwater fracturing operations to minimize energy loss due to tremendous amount of friction between tubular goods and water or brine solutions during the pumping of very high rate of fluids. Currently almost all friction reducers used are high molecular weight polyacrylamide emulsions. Large amount of polymers is injected into the formation even at very low concentrations (typically 0.5 - 2 gpt) due to the large volume of a typical slickwater frac treatment. Concerns have persistently been raised over possible fracture and formation damages caused by the friction reducers. All current friction reducers, including copolymers, are polymers with C-C backbones, which are difficult to break. Tests show that these polymers, even in the presence of oxidizer breakers, cause formation damage. A novel friction reducer featuring easily breakable chemistry has been developed to offer clean, non-damaging slickwater stimulations. This new non-damaging friction reducer, delivered also in liquid form for the ease of transportation and field operation, is very effective as a friction reducer, compatible with common chemical additives (scale inhibitors, biocides, clay stabilizers, surfactants, brines, etc) and stable towards mechanical shearing. This paper will present the product development details and lab tests on the effectiveness of the new friction reducer in water and various brines and its hydration profile at different temperatures, chemical compatibility and breaking profiles. Formation damage studies on tight sandstone and shale formation on this new friction reducer in comparison with the conventional ones have been conducted and will be discussed in the paper. Results show the non-damaging friction reducer degrades easily with conventional breakers and leave no damage to the formation. Several successful multi-stage slickwater frac completions have been performed with the new friction reducer and these field trials will also be reviewed.
机译:摩擦减速剂通常用于光滑的压裂操作中,以最大限度地减少由于在泵送非常高的流体速率期间管状产品和水或盐水溶液之间的巨大摩擦而导致的能量损失。目前几乎所有使用的摩擦减速剂都是高分子量的聚丙烯酰胺乳液。由于大量的典型光滑的近距离处理,即使在非常低的浓度(通常为0.5-2 GPT),也将大量的聚合物注入地层中。令人担忧的是在可能的骨折和摩擦减速剂造成的骨折和形成损害上延伸。所有电流摩擦减速剂(包括共聚物)是具有C-C骨架的聚合物,这难以破裂。试验表明这些聚合物,即使在氧化剂断路器的存在下,也会导致形成损伤。已经开发出一种具有易于破解化学的新型摩擦减速剂,以提供干净,无损坏的滑动刺激。这种新的非损坏摩擦减速剂,也以液体形式交付,用于易于运输和现场操作,作为摩擦减速剂非常有效,与常见的化学添加剂相容(SCALE抑制剂,杀生物剂,粘土稳定剂,表面活性剂,盐水等)稳定朝向机械剪切。本文将提出产品开发细节和实验室测试水和各种盐水中新型摩擦减速器的有效性及其在不同温度,化学兼容性和破碎型材的水合曲线的有效性。与传统的摩擦减速器相比,对这种新的摩擦减速器的紧密砂岩和页岩形成的形成损伤研究,并将在论文中讨论。结果表明,具有常规断路器的不损坏摩擦减速器可轻松降解,不会对地层造成损坏。已经使用新的摩擦减速机进行了几种成功的多级Slickwater FRAC完成,并将审查这些现场试验。

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