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A nonlinear elasto‐viscoplastic model for clayed rock and its application to stability analysis of nuclear waste repository

机译:粘土岩的非线性弹性粘液模型及其在核废料储存库稳定性分析中的应用

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摘要

The creep behavior is one of the most important topics on the stability analysis of rock mass in underground engineering. In order to characterize the creep deformation of clayey rock more accurately, this study proposes a nonlinear elasto‐viscoplastic (EVP) model based on a new yield surface and a modified Mohr‐Coulomb (MC) flow potential. First, the finite element (FE) formulation for the constitutive creep behavior is derived and a user subroutine to define the material's mechanical behavior (UMAT) is implemented in the commercial finite element package ABAQUS. The numerical simulation is validated against the triaxial creep tests of a cylinder, and the results show that the proposed model can effectively predict the creep responses of clayey rock and thus compensate for the deficiency of the creep model in ABAQUS. Then, the proposed model is used to study the long‐term stability of clayey rock formation surrounding an underground experimental site. Based on the results from triaxial creep tests and in situ monitoring of the lining deformation, the time‐dependent material creep parameters are obtained for rock by using the back analysis method. The predicted lining deformation is in good agreement with the field data with most of the relative errors less than 3.5%. The creep zone in the surrounding rock demonstrates that the horizontal scope is larger than the vertical one. The proposed model is proven to provide accurate prediction on the creep characteristics of clayey rock, showing a potential to assess the long‐term stability and reliability of large‐scale underground engineering structures.
机译:蠕变行为是地下工程岩石稳定性分析最重要的话题之一。为了使粘土岩的蠕变变形更准确地,该研究提出了基于新产屈屈率表面和改进的MoHR-Coulomb(MC)流动电位的非线性弹性粘蛋白(EVP)模型。首先,导出用于组成蠕变行为的有限元(Fe)制剂,并且在商业有限元件包中实现了用于定义材料的机械行为(UMAT)的用户子程序。该数值模拟验证了汽缸的三轴蠕变试验,结果表明,所提出的模型可以有效地预测粘土岩的蠕变反应,从而补偿阿布松蠕变模型的缺陷。然后,拟议的模型用于研究围绕地下实验部位周围的粘土岩层的长期稳定性。基于三轴蠕变试验的结果和原位监测衬里变形,通过使用后分析方法对岩石获得时间依赖性材料蠕变参数。预测的衬里变形与具有小于3.5%的大多数相对误差的现场数据一致。周围岩石中的蠕变区展示了水平范围大于垂直的范围。拟议的模型被证明是对Clayey Rock的蠕变特性提供准确的预测,旨在评估大规模地下工程结构的长期稳定性和可靠性。

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