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COMPARISON OF INTERRACIAL AND CONTINUUM MODELS FOR DYNAMIC FRAGMENTATION ANALYSIS

机译:动态分段分析的区间模型和连续模型的比较

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The micro structural design has an essential effect on the fracture response of brittle materials. We present a stochastic bulk damage formulation to model dynamic brittle fracture. This model is compared with a similar interfacial model for homogeneous and heterogeneous materials. The damage models are rate-dependent, and the corresponding damage evolution includes delay effects. The delay effect provides mesh objectivity with much less computational efforts. A stochastic field is defined for material cohesion and fracture strength to involve micro structure effects in the proposed formulations. The statistical fields are constructed through the Karhunen-Loeve (KL) method. An advanced asynchronous Spacetime Discontinuous Galerkin (aSDG) method is used to discretize the final system of coupled equations. Application of the presented formulation is shown through dynamic fracture simulation of rock under a uniaxial compressive load. The final results show that a stochastic bulk damage model produces more realistic results in comparison with a homogenizes model.
机译:微观结构设计对脆性材料的断裂响应具有重要影响。我们提出了一种随机的整体破坏公式来模拟动态脆性断裂。将该模型与均质和异质材料的类似界面模型进行了比较。损伤模型取决于速率,并且相应的损伤演化包括延迟效应。延迟效果以较少的计算工作量提供了网格客观性。为材料的内聚力和断裂强度定义了一个随机场,以在建议的配方中涉及微观结构效应。统计字段是通过Karhunen-Loeve(KL)方法构造的。先进的异步时空不连续Galerkin(aSDG)方法用于离散耦合方程组的最终系统。通过岩石在单轴压缩载荷下的动态断裂模拟显示了所提出配方的应用。最终结果表明,与均质化模型相比,随机大宗损伤模型产生的结果更为真实。

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