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Viscous Slickwater as Enabler for Improved Hydraulic Fracturing Design in Unconventional Reservoirs

机译:粘性Slickwater作为推动在非传统水库中改进液压压裂设计的推动器

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The development of unconventional fields has experienced major efficiency gains.One main breakthrough in efficiency is the introduction of viscous slickwater fracturing fluids.Viscous slickwater enables placement of higher proppant concentration than conventional slickwater and is less damaging than guar-based fluid,leading to aggressive fracturing designs and improved production.High viscosity friction reducer is the main component in viscous slickwater,which can replace hybrid and crosslinked fracturing fluids in unconventional reservoir completions.The successful application of high viscosity friction reducing fluid requires proper fluid hydration and adequate viscosity,which depends on water salinity and proppant concentration.We developed techniques for improved testing of friction reducers and friction reducer selection guidelines to support optimum placement of the fracturing design.A comparison of production results of wells fractured by viscous slickwater to those offset wells demonstrated the effectiveness of aggressive design with viscous slickwater fluids.A high viscosity friction reducer was tested in the laboratory and applied in the field.Experimental data demonstrate a good correlation between low shear viscosity and proppant transport capability.Static and dynamic proppant transport data were used to design viscous slickwater to replace linear gel.The friction reducer has been successfully applied in the field in more than 3,000 stages.Formations that were traditionally fractured with crosslinked gel were successfully fractured using viscous slickwater with ease.Replacing conventional slickwater with viscous slickwater enables the transport of higher proppant concentration with little change in operations.Aggressive designs deliver a boost in production,thus confirming viscous slickwater as the fluid of choice.Improved chemistry enables easier operations,faster well completion,and improved initial production,as confirmed by case studies.This study provides information for the application of viscous slickwater and the rigorous testing that is required and often overlooked.
机译:非传统领域的发展经历了主要的效率增益。效率的主要突破是引入粘性光滑的裂缝液。患有较高的PliCK水,使得比常规光滑水的浓度更高,并且损害伴随基于瓜尔的液体较小,导致侵略性的压裂设计和改进的生产。高粘度摩擦减速剂是粘性光滑水中的主要成分,可以取代杂种和交联压裂液在非常规储层完成中。高粘度摩擦还原液的成功应用需要适当的流体水合和足够的粘度,这取决于水盐和支撑剂浓度。我们开发了改进摩擦减速器和摩擦减速机选择指南的技术,以支持压裂设计的最佳放置。通过粘性光滑井的井下孔的生产结果的比较证明了具有粘性光滑液的侵蚀性设计的有效性。在实验室中测试了高粘度摩擦减速剂并在现场施用。实验数据证明了低剪切粘度和支撑剂运输能力之间的良好相关性。使用和动态的支撑剂运输数据设计粘性光滑剂以取代线性凝胶。摩擦减速器已成功应用于超过3,000个阶段的领域。使用粘性光滑剂与交联凝胶的传统上裂缝的成功裂缝的形成性与粘性光滑的常规光滑滑水成功裂缝。运输更高的支撑剂浓度随着操作的几乎没有变化。通过案例研究,确认粘性光滑的粘性光滑,从而实现了粘性的光滑。这项研究P. Rovides应用粘性光滑的信息和所需的严格测试和经常被忽视的信息。

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