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Innovative Friction Reducer Provides Improved Performance and Greater Flexibility in Recycling Highly Mineralized Produced Brines

机译:创新的摩擦减速机提供了更高的性能和更大的灵活性在回收高度矿化生产的盐水中

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Currently, inverse emulsion (water-in-oil) polymers are the most widely applied friction reducers for hydraulic fracturing. While oil-external friction reducers are the industry standard, they are limited by their tolerance to water containing high Total Dissolved Solids (TDS), requiring low TDS in blended waters to achieve adequate friction reduction without the addition of an external surfactant to aid in hydration. To increase operational efficiency and reduce impact on local infrastructure, operators desire to recycle the maximum amount of produced water. To meet this goal, a friction reducer that functions unassisted in high TDS water is needed. This paper describes the use of a Dispersion Polymer Friction Reducer (DPFR) in the Marcellus Shale that addresses this need. A salt-tolerant, water-based friction reducer was developed to allow well operators to reuse high TDS produced waters encountered in the Marcellus Shale. Both lab and field experiments were carried out to assess the effectiveness of the new friction reducer. The data presented in this paper show several advantages of the DPFR: (1) conservation of fresh water sources, (2) greater flexibility in water source options, (3) reduced analytical testing for produced water management, and (4) rapid onset of friction reduction without need for external surfactants. The DPFR provided efficiency improvements to the service company through fewer chemicals required to achieve high pumping rates. The operator benefitted from having greater flexibility in use of produced, recovered and recycled waters. Laboratory flow loop tests indicated that the DPFR would be an effective friction reducer for a wide variety of water types, and this was confirmed by field testing as shown in the treatment plots included in this paper. Minor modifications in material handling procedures were required in the application of the DPFR. This paper details the collaboration between a chemical manufacturer, a service company and an operator which resulted in the successful development, testing and deployment of an innovative technology in the Marcellus Shale. The DPFR technology offers environmental, economic, and operational advantages over the previous inverse-emulsion polymer technology.
机译:目前,反相乳液(水包油)的聚合物是用于水力压裂应用最广泛的减阻。而油外相减阻是行业标准,它们可通过它们的耐受性的含高的总溶解固体(TDS)的水的限制,需要在混合水域低TDS以实现在不添加外部表面活性剂与在水助剂充分减小摩擦。为了提高操作效率,并减少对本地基础设施的影响,操作员希望回收的生成的水的最大量。为了达到这一目标,减摩剂,在高TDS水无助的功能是必要的。本文介绍了在马塞勒斯页岩满足这一需求使用分散聚合物减阻(DPFR)的。耐盐,水性摩擦降低的开发是为了允许井操作员重用马塞勒斯页岩遇到高TDS产生水域。实验室和现场进行了实验,以评估新的摩擦降低的效果。本文提出的数据表明所述DPFR的几个优点:(1)保护的淡水源,(2)在水源选项更大的灵活性,(3)减少了对产生的水管理分析测试,和(4)起效快的摩擦减小,而不需要外部的表面活性剂。该DPFR提供提高效率,通过减少化学品的服务公司需要达到较高的抽水速度。从具有在使用中产生了更大的灵活性中获益的操作者,回收和循环水。实验室流动环路测试表明DPFR将是各种各样的水类型的有效摩擦降低,这是由现场测试证实如图包括在本文的处理区。在原材料处理方法稍作修改都必须在DPFR的应用。本文详细介绍了化学品制造商,服务公司,这就造成了一种创新的技术在马塞勒斯页岩的成功开发,测试和部署的运营商之间的合作。该DPFR技术较逆乳液聚合物技术提供了环境,经济和运营优势。

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