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Numerical Analysis of Blast-Induced Stress Waves in a Rock Mass with Anisotropic Continuum Damage Models Part 2: Stochastic Approach

机译:具有各向异性连续谱损伤模型的岩体中爆炸诱发应力波的数值分析,第2部分:随机方法

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This paper reports the second part of the study carried out by the authors on the underground explosion-induced stress wave propagation and damage in a rock mass. In the accompanying paper reporting the first part of the study, equivalent material properties were used to model the effects of existing cracks and joints in the rock mass. The rock mass and its properties were treated as deterministic. In this paper, existing random cracks and joints are modeled as statistical initial damage of the rock mass. In numerical calculation, an anisotropic continuum damage model including both the statistical anisotropic initial damage and cumulative damage dependent on principal tensile strain and stochastic critical tensile strain is suggested to model rock mass behavior under explosion loads. The statistical estimation of stress wave propagation in the rock mass due to underground explosion is evaluated by Rosenblueth's point estimate method. The suggested models and statistical solution process are also programmed and linked to Autodyn3D as its user's subroutines. Numerical results are compared with the field test data and those presented in the accompanying paper obtained with equivalent material property approach.
机译:本文报道了作者在地下爆炸引起的应力波在岩体中的传播和破坏研究的第二部分。在随附的报告研究的第一部分的论文中,等效的材料特性用于模拟岩体中现有裂缝和接缝的影响​​。岩体及其性质被视为确定性的。在本文中,将现有的随机裂缝和节理建模为岩体的统计初始损伤。在数值计算中,建议采用各向异性连续介质破坏模型,该模型既包括统计各向异性初始破坏又取决于主要拉伸应变和随机临界拉伸应变的累积破坏,以模拟爆炸载荷下的岩体行为。用Rosenblueth点估计方法评估了地下爆炸在岩体中应力波传播的统计估计。还对建议的模型和统计解决方案进行了编程,并将其链接到Autodyn3D作为其用户的子例程。将数值结果与现场测试数据进行比较,并用等效材料特性方法获得随附论文中给出的结果。

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