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Stability of the formation interface under the impact of hydraulic fracture propagation in the vicinity of the formation interface

机译:在地层界面附近的液压断裂传播影响下形成界面的稳定性

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Unconventional hydrocarbon reservoirs in layered formations, such as tight sandstones and shales, are continually being developed. Hydraulic fracturing is a critical technology for the high-efficiency development of hydrocarbon reservoirs. Understanding the stress field and stability of the formation interface is vital to understanding stress propagation, preferably before the growing hydraulic fracture contacts the formation interface. In this study, models are developed for computing the stress field of hydraulic fracture propagation near the formation interface, and the stress fields within and at the two sides of the formation interface are analyzed. Four failure modes of the interface under the impact of hydraulic fracture propagation in its vicinity are identified, and the corresponding failure criteria are proposed. By simulating the magnitude and direction of peak stress at different parameters, the failure mode and stability of the formation interface are analyzed. Results reveal that when the interface strength is weak, the formation interface fails before the growing hydraulic fracture contacts it, and its stability is significantly related to a variety of factors, including the type of formation interface, rock mechanical properties, far-field stress, structural parameters, distance between the hydraulic fracture and formation interface, and fracturing execution parameters.
机译:不传统的碳氢化合物储层在层状地层,如紧密的砂岩和Shales,不断发展。水力压裂是碳氢化合物储层高效开发的关键技术。理解地层界面的应力场和稳定性对理解应力传播至关重要,优选在生长液压断裂之前接触地层界面之前。在该研究中,开发了用于计算地层界面附近的液压断裂传播的应力场的模型,并且分析了地层界面的两侧内和处的应力场。鉴定了在其附近的液压断裂传播的影响下界面的四种故障模式,提出了相应的失效标准。通过在不同参数下模拟峰值应力的幅度和方向,分析了地层界面的故障模式和稳定性。结果表明,当界面强度较弱时,在不断增长的液压断裂接触之前,地层界面发生故障,其稳定性与各种因素显着相关,包括形成界面类型,岩石机械性能,远场压力,结构参数,液压断裂与形成界面之间的距离,以及压裂执行参数。

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