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On the drag reduction effect and shear stability of improved acrylamide copolymers for enhanced hydraulic fracturing

机译:改进水力压裂用改进丙烯酰胺共聚物的减阻效果和剪切稳定性

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Polymeric drag reducers, such as partially hydrolysed polyacrylamide (PHPAAm), are important chemical additives in hydraulic fracturing fluids as they can significantly decrease the frictional pressure drop in the casing (by up to 80%), resulting in an increase of the injection rate that can be delivered to the fracturing point. The incorporation of sodium 2-acrylamido-2-methylpropane sulphonic acid (NaAMPS) moieties into polyacrylamide (PAAm) can further improve the performance of fracturing fluids by addressing some compatibility issues related to the use of PHPAAm, e.g., the sensitivity to water salinity. In this study, three types of poly(acrylamide-co-NaAMPS) and pure PHPAAm were investigated with respect to polymer induced drag reduction and mechanical polymer degradation in turbulent pipe flow in a pressure-driven pipe flow facility. The test section comprised a horizontal 1" bore circular cross-section pipe. The facility was modified in order to allow long time/length experiments by automatically recirculating the polymer solution in a closed-loop through the test section. The presence of NaAMPS groups in the copolymer backbone is found to increase the ability of PHPAAm to reduce frictional drag while the vulnerability to mechanical degradation remains unaffected. The drag reduction of NaAMPS copolymer solutions can be described by a modified version of Virk?s correlation (1967), extended to include the effect of Reynolds number. Polymer mechanical degradation is found to proceed until the friction reducer is almost ineffective in reducing drag. This phenomenon is in contrast with the most common correlation for polymer degradation, which predicts the existence of an asymptotic (but finite) limit to the reduced drag reduction. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:聚合物减阻剂,例如部分水解的聚丙烯酰胺(PHPAAm),是水力压裂液中的重要化学添加剂,因为它们可以显着降低套管中的摩擦压降(最多降低80%),从而提高了注入速率,可以输送到压裂点。通过解决与使用PHPAAm有关的一些相容性问题(例如对水盐度的敏感性),将2-丙烯酰胺基-2-甲基丙烷磺酸钠(NaAMPS)部分掺入聚丙烯酰胺(PAAm)中可以进一步改善压裂液的性能。在这项研究中,研究了三种类型的聚丙烯酰胺-co-NaAMPS和纯PHPAAm,它们在压力驱动的管道流动设备中,在湍流管道中,聚合物引起的减阻作用和聚合物的机械降解作用均得到了研究。测试部分包括一条水平的1英寸圆形圆形横截面管。对设备进行了改造,以便通过在测试部分中将聚合物溶液在闭环中自动再循环来进行长时间/长度的实验。发现共聚物主链增加了PHPAAm降低摩擦阻力的能力,而对机械降解的脆弱性却不受影响。NaAMPS共聚物溶液的阻力减少可以用Virk's相关性(1967)的修改版来描述,扩展到包括雷诺数的影响,发现聚合物的机械降解一直持续到减摩剂几乎不能有效降低阻力为止,这一现象与聚合物降解的最常见相关性相反,后者预示着存在渐近(但有限)极限(C)2016 The Authors。Elsevier Ltd.发布。

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