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The Shear Mechanisms of Natural Fractures during the Hydraulic Stimulation of Shale Gas Reservoirs

机译:页岩气藏液压刺激过程中自然骨折的剪切机制

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摘要

The shearing of natural fractures is important in the permeability enhancement of shale gas reservoirs during hydraulic fracturing treatment. In this work, the shearing mechanisms of natural fractures are analyzed using a newly proposed numerical model based on the displacement discontinuities method. The fluid-rock coupling system of the model is carefully designed to calculate the shearing of fractures. Both a single fracture and a complex fracture network are used to investigate the shear mechanisms. The investigation based on a single fracture shows that the non-ignorable shearing length of a natural fracture could be formed before the natural fracture is filled by pressurized fluid. Therefore, for the hydraulic fracturing treatment of the naturally fractured shale gas reservoirs, the shear strength of shale is generally more important than the tensile strength. The fluid-rock coupling propagation processes of a complex fracture network are simulated under different crustal stress conditions and the results agree well with those of the single fracture. The propagation processes of complex fracture network show that a smaller crustal stress difference is unfavorable to the shearing of natural fractures, but is favorable to the formation of complex fracture network.
机译:自然骨折的剪切在液压压裂处理过程中页岩气藏的渗透性增强是重要的。在这项工作中,使用基于位移不连续方法的新提出的数值模型来分析自然骨折的剪切机制。该模型的流体摇滚耦合系统经过精心设计,以计算裂缝的剪切。单个骨折和复杂的骨折网络都用于研究剪切机制。基于单个骨折的研究表明,在通过加压流体填充自然骨折之前,可以形成自然骨折的不可忽略的剪切长度。因此,对于天然骨折的页岩气储层的液压压裂处理,页岩的剪切强度通常比拉伸强度更重要。复杂裂缝网络的流体岩石耦合传播过程在不同的地壳应力条件下模拟,结果与单一骨折的结果很好。复杂骨折网络的传播过程表明,较小的地壳应力差是对自然骨折的剪切不利,但有利于形成复杂的裂缝网络。

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