首页> 外文会议>SPE Middle East Unconventional Resources Conference >Hydraulic Fracture Initiation and Propagation Model Provides Theoretical Ground for Hybrid-Type Fracturing Schedules in Unconventional Gas Reservoir in the Sultanate of Oman
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Hydraulic Fracture Initiation and Propagation Model Provides Theoretical Ground for Hybrid-Type Fracturing Schedules in Unconventional Gas Reservoir in the Sultanate of Oman

机译:液压骨折启动和传播模型为阿曼苏丹酸盐中的非传统气体储层中的混合型压裂时间表提供了理论基础

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摘要

A recent series of tight gas discoveries in the Amin formation of the greater Fahud area represents some of the most exciting exploration success of this decade in the Sultanate of Oman.The structures have been evaluated as containing very significant amounts of gas locked in a challenging deep and hot environment requiring hydraulic fracture stimulation.Since their discoveries,the two primary challenges have been difficult breakdown of the formation and limited proppant placement during stimulation attempts.The early experience in the exploration and appraisal campaigns from 2009 to 2014 has led to fracture designs with conservative proppant amounts that could limit the full potential of the field.Several geomechanical studies have been commissioned in the past to guide completion strategies in well placement,perforation, and fracture stimulation design. The objectives of this study were to model hydraulic fracture initiation and breakdown in the three Amin zones(upper,middle,and lower)to provide some theoretical understanding of the impact of the different parameters on the observed field breakdown pressures.In agreement with field observations,the model showed that lowering the viscosity of the pad has a major impact in lowering the breakdown pressures.Consequently,current best practices include formation breakdown and hydraulic fracture propagation with low-viscosity fluids followed by proppant placement with high-viscosity fluids.When applied to tight gas formations in the Sultanate of Oman,the hybrid fracturing evolves from conventional designs for the purpose of successful fracture initiation,while still placing a successful job.
机译:amin形成的最近一系列紧迫的气体发现是大型Fahud地区的一些令人兴奋的探讨成功的一些最令人兴奋的阿曼苏丹国最令人兴奋的探索成功。该结构已被评估为含有非常大量的气体锁定在挑战深处和液压骨折刺激的热环境。在刺激尝试期间,两次主要挑战难以破解形成和有限的支撑剂放置。2009年至2014年的勘探和评估活动的早期经验导致了骨折设计保守的支撑剂可能限制现场的全部潜力。过去已经委托了地质力学研究,以指导井放置,穿孔和骨折刺激设计中的完工策略。本研究的目的是在三个amin区(上部,中,中,下,下)的液压断裂开始和故障模拟,为不同参数对观察到的现场击穿压力的影响提供一些理论上了解。在与现场观察协议该模型表明,降低垫的粘度在降低击穿压力方面具有重大影响。当前的最佳实践包括与低粘度流体的形成击穿和液压断裂传播,然后具有高粘度流体的支撑剂放置。当施加时在阿曼苏丹酸盐中的狭窄气体形成中,杂交压裂从传统设计演变,以便成功骨折开始,同时仍然取得成功的工作。

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