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Experimental Study and Numerical Modeling of Fracture Propagation in Shale Rocks During Brazilian Disk Test

机译:巴西磁盘试验期间页岩岩中骨折繁殖的实验研究与数值模型

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Reliable prediction of fracture process in shale-gas rocks remains one of the most significant challenges for establishing sustained economic oil and gas production. This paper presents a modeling framework for simulation of crack propagation in heterogeneous shale rocks. The framework is on the basis of a variational approach, consistent with Griffith's theory. The modeling framework is used to reproduce the fracture propagation process in shale rock samples under standard Brazilian disk test conditions. Data collected from the experiments are employed to determine the testing specimens' tensile strength and fracture toughness. To incorporate the effects of shale formation heterogeneity in the simulation of crack paths, fracture properties of the specimens are defined as spatially random fields. A computational strategy on the basis of stochastic finite element theory is developed that allows to incorporate the effects of heterogeneity of shale rocks on the fracture evolution. A parametric study has been carried out to better understand how anisotropy and heterogeneity of the mechanical properties affect both direction of cracks and rock strength.
机译:页岩气岩中骨折过程的可靠预测仍然是建立持续经济石油和天然气生产的最重要挑战之一。本文介绍了异构页岩岩石中裂纹繁殖模拟的建模框架。该框架是在基于变分方法的基础上,与格里菲斯的理论一致。建模框架用于在标准的巴西盘试验条件下重现页岩岩样中的断裂传播过程。从实验中收集的数据用于确定测试样品的拉伸强度和断裂韧性。为了在裂纹路径模拟中掺入页岩形成异质性的影响,标本的断裂性质被定义为空间随机田。开发了基于随机有限元理论的计算策略,其允许在骨折演化中纳入页岩岩石的异质性的影响。已经进行了参数研究以更好地了解机械性能的各向异性和异质性如何影响裂缝和岩石强度的两者。

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