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Optimized Rock Fluid Interaction and Stimulation Intensity Enhancement Improves Well Performance: A Marcellus Case Study

机译:优化的岩石流体相互作用和刺激强度增强提高了良好的性能:Marcellus案例研究

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Large volume slick-water stimulations have become the de facto standard for completion strategy in the Upper Devonian,Marcellus,and Utica/Point Pleasant.Current completion optimization work has focused on optimizing stage spacing,sand loading,and injection rate which have shown increases in well productivity.One commonly overlooked variable in the design equation is stimulation fluid chemistry and rock/fluid interaction.Friction reducers,the primary additive of a slickwater system,have become a commodity with many service companies providing similar systems.Premium slickwater systems in the Marcellus are generally characterized by the ability to tolerate high percentages of produced water.We have developed an alternative approach to the design of stimulation fluid chemistry.This approach consists of creating a comprehensive laboratory workflow justification for multiple fluid combinations with consideration for specific thermal maturity windows.The laboratory workflow includes proprietary rock/ fluid interaction tests that insure formation compatibility,lever imbibition/displacement production mechanisms,insure compatibility of fluid components inclusive of available water sources,and insure optimization of the fluid based on stimulation intensity(Budney 2017)objectives.After extensive testing,a new stimulation fluid chemistry has been developed that offers several advantages verified by laboratory testing.The new stimulation fluid chemistry consists of a multifunctional additive with the following characteristics: salt tolerant,viscosifying,formation stabilizing,wettability enhancing friction reducer technology paired with a compatible scale inhibitor and biocide.This new stimulation fluid chemistry was field tested against an incumbent fluid chemistry provided by the stimulation service company.Well production data from the first multiple well experiment demonstrated the new stimulation fluid chemistry resulted in significantly improved well performance.A second multi-well experiment in a different area was conducted and proved the well performance improvement associated with the new stimulation fluid chemistry was repeatable.Economic analyses on wells from both field experiments demonstrate an excellent return on investment with the new stimulation fluid chemistry.This study highlights the importance of justifying stimulation fluid chemistry utilizing a laboratory workflow.The laboratory workflow incorporates rock/fluid interaction testing to maximize the imbibition/ displacement production mechanism.The laboratory workflow must also prove that the stimulation fluid chemistry satisfies the stimulation intensity objectives of high rate,high sand concentration,and reduced fluid volumes while enabling reliable field execution.
机译:大批量光滑水刺激已成为上德文郡,马塞尔斯和UTICA / Point的完工策略的事实标准.Current完成优化工作,专注于优化阶段间距,砂荷载和注射速率,这显示出增加良好的生产率。设计方程中的通常被忽视的变量是刺激流体化学和岩石/流体相互作用。解构还原剂,Slickwater系统的主要添加剂,已成为许多服务公司提供类似的系统的商品。Marcellus中的Slickwater Systems拥有许多服务公司。通常的特征在于容忍高百分比的产生水的能力。我们已经开发出促进刺激流体化学设计的替代方法。该方法包括针对特定的热成熟度窗口考虑多种流体组合来创建综合实验室工作流程。实验室工作流程包括抢劫ary摇滚/流体相互作用试验,确保形成兼容性,杠杆吸收/位移生产机制,包括可用水源的流体成分的保险兼容性,并根据刺激强度(Budney 2017)目标来确保流体的优化。在广泛的测试中,A已经开发出新的刺激流体化学,提供了通过实验室测试验证的几个优点。新的刺激流体化学由多功能添加剂组成,具有以下特征:耐盐,粘附,形成稳定,润湿性增强摩擦减速器技术与兼容量表抑制剂配对和杀生物剂。这种新的刺激流体化学是对由刺激服务公司提供的现有流体化学测试的现场。来自第一多个井实验的威尔生产数据显示了新的刺激流体化学导致显着改善的好性能。第二米进行了不同领域的Ulti-井实验,并证明了与新的刺激流体化学相关的井性能改善是可重复的。来自两个场实验的井上的经济分析表明,新的刺激流体化学展示了出色的投资回报。本研究亮点用实验室工作流程为刺激流体化学的重要性。实验室工作流程包括岩石/流体相互作用测试,以最大限度地提高吸入/位移生产机制。实验室工作流程还必须证明刺激流体化学满足高速刺激强度目标,高砂浓度,降低流体体积,同时实现可靠的场执行。

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