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Hydro-mechanical modeling of hydraulic fracture propagation and its interactions with frictional natural fractures

机译:水力骨折繁殖的水力机械建模及其与摩擦自然骨折的相互作用

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摘要

Hydraulic fracturing is a key technique to activate natural fracture networks aiming at increasing permeability of non-conventional reservoirs. In order to design effective stimulations, it is necessary a good understanding of the hydraulic fracture propagation and its interaction with natural fractures. A robust methodology was developed using the finite element method to study the mechanisms that influence the activation of natural fractures and the subsequent process of hydraulic fracture propagation. An innovated mesh fragmentation technic is developed to simulate hydraulic fracture propagation with arbitrary paths. The behavior of the hydraulic fracture is modeled using hydromechanical cohesive interface elements with progressive damage model. The Mohr Coulomb criterion with tension cutoff is incorporated to represent the frictional behavior of natural fractures. The developed methodology is validated through literature data on experimental test results. The three main possibilities of interaction events (opening, crossing and arrest) are predicted accurately. Subsequently, the effect of some primary parameters such as the angle of approach between hydraulic and natural fracture, the stress ratio between minimum and maximum horizontal stresses and the internal friction angle of the natural fracture were studied to provide a better insight of the propagation processes of the hydraulic fracture. An interaction response diagram is proposed combining the effects of those parameters to provide a good estimative of fracture interaction.
机译:液压压裂是激活旨在提高非传统储层的渗透性的自然骨折网络的关键技术。为了设计有效的刺激,有必要了解液压骨折繁殖及其与自然骨折的相互作用。利用有限元方法开发了一种鲁棒的方法,以研究影响自然骨折激活的机制和随后的液压断裂繁殖过程。开发了一种创新的网格碎片技术,以模拟与任意路径的液压断裂传播。使用具有渐进式损伤模型的流体力机械凝聚界面元件进行建模液压骨折的行为。具有张力截止的MoHR库仑标准,以表示自然骨折的摩擦行为。通过关于实验测试结果的文献数据验证开发的方法。准确预测互动事件(开放,交叉和逮捕)的三个主要可能性。随后,研究了诸如液压和自然裂缝之间的接近角度,最小和最大水平应力之间的应力比以及自然骨折的内部摩擦角的影响,以提供更好地介绍繁殖过程液压骨折。提出了与这些参数的效果相结合的交互响应图,以提供良好的裂缝相互作用估计。

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