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Study of Friction Reducers for Recycled Stimulation Fluids in Environmentally Sensitive Regions

机译:对环境敏感区域再生刺激液的摩擦减速器研究

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Recent studies involving the measurement of friction reducer performance with a variety of brines typical of flow back/recycled stimulation waters of the North Eastern United States have indicated a clear differentiation by specific product type. The friction reducer variances specifically studied were: product charge, charge type, charge distribution reflective of polymerization, molecular weight, inverse emulsion surfactant packages, and manipulation of the internal or external phases. Increasing environmental regulatory pressure in geographic regions sensitive to water use, stimulation flow back discharge, and an increasing need for recycled water, the Marcellus gas play for example, have created a greater demand for higher performing additives in fluid systems used for oil/gas well fracturing. One additive that is greatly influenced by brine characteristic and water quality is the friction reducer. Increasing the ionic strength as well as multivalent cation content of the water typically limits the type of friction reducer used to obtain optimum performance. Standard anionic friction reducers do not perform well in many of these recycled waters as the friction reducer’s ultimate performance is decreased, but also the rate of inversion is retarded and the potential for formation damage is increased. When compared to standard friction reducers, the ultimate friction reduction of the best of the series studied achieved nearly twice the friction reduction, approaching Virk’s theoretical limit, and had an inversion rate nearly four times as rapid as a standard friction reducer. The dosages of the friction reducer were from 0.25 to 1.00 gallons per thousand gallons of treatment fluid. These friction reducers were tested in a variety of brines in a 10 gallon capacity friction loop through a ? inch pipe at a Newtonian Reynolds number of 150,000. The data was collected every second during a 10 minute run with 6 specific performance criteria used to rank the candidates. This study demonstrates it is possible to provide a friction reducer that works well in brine content typical to stimulation fluids that contain a majority of flow back water from previous well treatments. This would allow well service companies to provide quality stimulation fluids of greater brine content and also minimize fluid disposal volumes and affiliated costs. Chemical additives such as these are needed in regions where both water quality and quantity are concerns.
机译:涉及的减摩性能测量与各种卤水典型回流的最近研究/在美国东北部的循环刺激水域均表示按具体产品类型的一个明显的分化。所述减摩方差专门研究为:产品电荷,电荷类型,聚合的电荷分布反射型,分子量,反相乳液的表面活性剂包,以及内部或外部相中的操纵。增加水的使用,刺激流回放电,并越来越需要再生水敏感的地理区域的环境法规的压力,例如马塞勒斯气体发挥,已经创建了一个更大的需求为在用于油/气井流体系统更高性能的添加剂压裂。由盐水特性和水的质量的影响很大一种添加剂是摩擦减速器。增加离子强度以及水的多价阳离子含量通常限制用于获得最佳性能摩擦降低的类型。标准阴离子减阻不许多这些回收的海水作为减摩剂的最终性能降低的性能良好,而且也反转的速率被延迟和用于地层损害的可能性增大。相较于标准的减摩,最好该系列的最终减少摩擦所研究取得了近两倍的摩擦减少,接近Virk的理论极限,并且有一个转化率近四倍迅速作为一个标准的摩擦减速。所述减摩的剂量为每处理流体的千加仑0.25至1.00加仑。这些减摩在各种通过在10加仑容量的摩擦环盐水进行测试?在15万牛顿雷诺数英寸的管道。数据收集与用于排列候选人6特异性性能标准在10分钟运行期间每一秒。这项研究表明,它可以提供减摩剂,在盐水含量典型含有来自前面的井处理大部分流背水的刺激液效果很好。这将有助于更好地服务企业提供更大的盐水内容质量刺激体液和也可以减少流体处理量和附属费用。需要在其中两个水质和水量担心区域化学添加剂如这些。

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