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Numerical Modelling of Interaction between Hydraulic Fractures and Natural Fractures by Using the Extended Finite Element Method

机译:延伸有限元法用液压裂缝与自然裂缝相互作用的数值模型

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摘要

Natural fractures usually develop in shale reservoirs. Thereby, in the process of hydraulic fracturing, it is inevitable that hydraulic fractures will intersect with natural fractures. In order to reveal the interaction mechanism between hydraulic-induced fractures and natural fractures, a two-dimensional fracture intersection model based on the extended finite element method (XFEM) is proposed, and the different types of intersecting criteria reported in the literature are compared. Then, the effects of natural fracture azimuth, fluid pressure in hydraulic fracture, and in situ principal stress difference on hydraulic fracturing are studied in detail. The results show that the fracture morphology is different under different criteria and working conditions. And the stress concentration phenomenon mainly concentrates on the tip in the obtuse angle side of natural fracture. Meanwhile, different fluid pressures in hydraulic fracture can also induce different intersection patterns. The obtained results in this work are of great benefit to understand the intersection mechanism between hydraulic fractures and natural fractures.
机译:天然骨折通常在页岩储层中发展。因此,在液压压裂的过程中,不可避免的是,液压裂缝会与自然骨折相交。为了揭示液压诱导的裂缝和自然裂缝之间的相互作用机理,提出了一种基于延长有限元方法(XFEM)的二维裂缝交叉模型,并比较了文献中报道的不同类型的交汇标准。然后,详细研究了自然骨折方位角,液压骨折中的流体压力和原位主应力差的影响。结果表明,在不同标准和工作条件下,骨折形态不同。并且应力集中现象主要集中在自然裂缝的钝角侧的尖端上。同时,液压骨折中的不同流体压力也可以诱导不同的交叉图案。在这项工作中获得的结果具有很大的好处,可以了解液压骨折和自然骨折之间的交叉点机制。

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