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Time-dependent drift degradation due to the progressive failure of rock bridges along discontinuities

机译:由于岩石桥梁沿不连续性逐渐破坏而导致的随时间变化的漂移退化

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摘要

An important element of time-dependent drift degradation is the progressive failure of intact segments along discontinuities, referred to as rock bridges. A fracture mechanics model is developed to simulate the time-dependent failure of rock bridges along discontinuities. The time dependence of the rock bridge failure process is modeled utilizing subcritical crack growth. The rock bridges give an effective cohesion to the discontinuities, and this cohesion is time-dependent due to the time-dependent failure of the rock bridges. The resulting first-order differential equation for joint cohesion is implemented into the UDEC distinct element numerical code to model time-dependent drift degradation. The model and its implementation into UDEC are validated using several simple examples, including a direct shear test and a rigid block on a slope. Two time-dependent drift degradation examples are then shown, one with and one without thermal loading. These examples used similar geometry, material parameters and in situ stresses as for the proposed underground drifts for the storage of nuclear waste at Yucca Mountain. Both with and without thermal loading, a large zone develops around the excavation where the joint cohesion and tensile strength drop to zero due to the failure of rock bridges. This in turn results in an excavation that is significantly less stable than if time dependence was not included. The results demonstrate the importance of time-dependence on the stability of underground excavations in hard rock.
机译:随时间变化的漂移退化的一个重要因素是完整段沿不连续性(称为岩桥)的逐步破坏。建立了一个断裂力学模型来模拟岩石桥梁沿不连续性的时间相关破坏。岩石桥梁破坏过程的时间依赖性是利用亚临界裂纹扩展进行建模的。岩石桥梁有效地凝聚了不连续性,由于岩石桥梁的时间依赖性破坏,这种凝聚力是时间依赖性的。用于联合内聚的结果一阶微分方程被实现到UDEC独特元素数字代码中,以模拟随时间变化的漂移退化。使用几个简单的示例验证了该模型及其在UDEC中的实现,包括直接剪切测试和边坡上的刚性砌块。然后显示了两个随时间变化的漂移衰减示例,一个带有热负载,另一个没有热负载。这些示例使用了与拟议的地下漂流相似的几何形状,材料参数和原地应力,用于在尤卡山(Yucca Mountain)储存核废料。无论有无热负荷,开挖周围都会形成一个较大的区域,由于岩石桥梁的破坏,连接处的内聚力和抗拉强度降至零。反过来,这导致开挖的稳定性比不包括时间依赖性的开挖稳定得多。结果证明了时间依赖性对硬岩地下开挖稳定性的重要性。

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