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An application of a cohesive fracture model combining compression, tension and shear in soft rocks

机译:压缩,拉伸和剪切相结合的内聚破裂模型在软岩中的应用

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A cohesive fracture model considering tension, compression and shear material behaviour is implemented into the hybrid continuum-discrete element method, i.e. Universal Distinct Element Code (UDEC), to simulate possible multiple fracture in soft rocks. The fracture model considers both elastic and inelastic (decomposed to fracture and plastic) displacements. The norm of the effective inelastic displacement is used to control the fracture behaviour. Three numerical examples, including Mode-I, Mode-II and Mixed-mode tests, are conducted to verify the model and its implementation in UDEC. The model is subsequently applied to simulate uniaxial compression and Brazilian disc tests on soft rocks and the results are compared with experimental results. The results indicate that the cohesive fracture model is capable of realistically simulating the combined tensile, shear and mixed-mode failure behaviour applicable to geomaterials. (C) 2015 Elsevier Ltd. All rights reserved.
机译:考虑到拉伸,压缩和剪切材料行为的内聚破裂模型被应用到混合连续离散元方法中,即通用离散元代码(UDEC),以模拟软岩中可能的多重裂缝。断裂模型同时考虑了弹性和非弹性(分解为断裂和塑性)位移。有效非弹性位移的范数用于控制断裂行为。进行了三个数值示例,包括模式I,模式II和混合模式测试,以验证该模型及其在UDEC中的实现。随后将该模型用于模拟软岩上的单轴压缩和巴西圆盘试验,并将结果与​​实验结果进行比较。结果表明,内聚断裂模型能够真实地模拟适用于土工材料的组合拉伸,剪切和混合模式破坏行为。 (C)2015 Elsevier Ltd.保留所有权利。

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