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An energy based analytical method to predict the influence of natural fractures on hydraulic fracture propagation

机译:一种基于能量的分析方法预测自然骨折对液压骨折扩展的影响

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摘要

Hydraulic fracturing is a widely applied stimulation method to enhance the productivity of unconventional resources. The hydraulic fracturing operation in naturally fractured reservoirs is complex, and the fractures can intersect a natural interface such as a bedding plane. The hydraulic fracture may either cross or be arrested by slippage without dilation, and the fracture plane can be opened upon arriving the interface. In the current study, a theoretical approach to predict the fracture extension encountering a natural fracture under far field stresses is developed, based on the Griffith stability criterion. The critical fluid pressure required to cross the interface, open the natural fracture, or make slippage take place is obtained. New criteria to separate opening zone, arrest and crossing zone are proposed based on stress field difference. The theoretical predictions are compared with experimental data and show reasonable accuracy. (C) 2017 Elsevier Ltd. All rights reserved.
机译:液压压裂是一种广泛应用的刺激方法,以提高非传统资源的生产率。 天然裂缝储层中的液压压裂操作是复杂的,并且裂缝可以与床上用品相交。 液压裂缝可以通过不扩张的滑动而通过滑动或被阻止,并且在到达界面时可以打开断裂面。 在目前的研究中,基于Griffith稳定标准,开发了一种预测遇到远场应力的自然骨折的裂缝延伸的理论方法。 获得交叉界面所需的临界流体压力,打开自然骨折或进行滑动。 基于应力场差异,提出了单独开口区,逮捕和交叉区的新标准。 理论预测与实验数据进行比较并显示合理的准确性。 (c)2017 Elsevier Ltd.保留所有权利。

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