...
首页> 外文期刊>Engineering Geology >On the hydraulic fracturing in naturally-layered porous media using the phase field method
【24h】

On the hydraulic fracturing in naturally-layered porous media using the phase field method

机译:基于相田法在天然分层多孔介质中的液压压裂

获取原文
获取原文并翻译 | 示例

摘要

In the hydraulic fracturing of natural rocks, understanding and predicting crack penetrations into the neighboring layers is crucial and relevant in terms of cost-efficiency in engineering and environmental protection. This study constitutes a phase field framework to examine hydraulic fracture propagation in naturally-layered porous media. Biot's poroelasticity theory is used to couple the displacement and flow field, while a phase field method helps characterize fracture growth behavior. Additional fracture criteria are not required and fracture propagation is governed by the equation of phase field evolution. Thus, penetration criteria are not required when hydraulic fractures reach the material interfaces. The phase field method is implemented within a staggered scheme that sequentially solves the displacement, phase field, and fluid pressure. We consider the soft-to-stiff and the stiff-to-soft configurations, where the layer interface exhibits different inclination angles O. Penetration, singly-deflected, and doubly-deflected fracture scenarios can be predicted by our simulations. In the soft-to-stiff configuration, theta = 0 degrees exhibits penetration or symmetrical doubly-deflected scenarios, and theta = 15 degrees exhibits singly-deflected or asymmetric doubly-deflected scenarios. Only the singly-deflected scenario is obtained for theta = 30 degrees. In the stiff-to-soft configuration, only the penetration scenario is obtained with widening fractures when hydraulic fractures penetrate into the soft layer.
机译:在天然岩石的水力压裂中,理解和预测到邻近层的裂缝渗透是在工程和环保成本效率方面至关重要的。该研究构成了一个相现场框架,用于检查天然层多孔介质中的液压断裂繁殖。 Biot的孔弹性理论用于耦合位移和流场,而相现场方法有助于表征骨折生长行为。不需要额外的骨折标准,并且断裂传播由相场进化的等式控制。因此,当液压骨折到达材料界面时,不需要渗透标准。相场方法在交错方案中实现,其顺序地解决了位移,相位场和流体压力。我们考虑软到硬度和僵硬的软配置,其中层界面表现出不同的倾斜角O.可以通过我们的模拟预测渗透,单偏转和双重偏转的骨折场景。在柔软到坚硬的配置中,θ= 0度表现出渗透或对称的双重偏转场景,并且θ= 15度呈现单偏转或不对称的双重偏转场景。仅获得单个偏转的场景,用于θ= 30度。在僵硬到软配置中,当液压骨折渗透到软层中时,只有在裂缝中获得穿透情况。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号