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>Modeling of anisotropic damage and creep deformation in brittle rocks
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Modeling of anisotropic damage and creep deformation in brittle rocks
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机译:脆性岩石各向异性损伤和蠕变变形的建模
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摘要
A new constitutive model is proposed for the description of induced anisotropic damage in brittle rocks. The formulation of the model is based on relevant results from micromechanics consideration. The distribution of microcracks is approximated by a second-order damage tensor. The effective elastic properties of damaged material are derived from the free enthalpy function. The evolution of damage is directly related to the growth of microcracks in different space orientations. The volumetric dilatancy due to sliding crack opening is taken into account. The model is extended to the description of creep deformation in brittle rocks. The time dependent deformation is seen as a consequence of the sub-critical propagation of microcracks due to stress corrosion process. The proposed model is applied to a typical brittle rock, the Lac du Bonnet granite. A general good agreement is obtained between numerical simulations and experimental data.
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机译:提出了一种新的本构模型,用于描述脆性岩石中的各向异性诱导损伤。模型的制定基于微力学考虑的相关结果。微裂纹的分布通过二阶损伤张量来近似。受损材料的有效弹性特性源自自由焓函数。损伤的演变与微裂纹在不同空间方向上的生长直接相关。考虑到由于滑动裂纹的打开引起的体积膨胀。该模型扩展到脆性岩石蠕变变形的描述。时间依赖性变形被认为是由于应力腐蚀过程导致的微裂纹亚临界传播的结果。提出的模型应用于典型的脆性岩石Lac du Bonnet花岗岩。在数值模拟和实验数据之间获得了总体良好的一致性。
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