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Explanation the difference in destructed areas simulated using various failure criteria by the wave dynamics analysis

机译:解释通过波动力学分析使用各种故障标准模拟破坏区域的差异

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Recent researches have shown that the damaged areas, calculated using various failure criteria for materials with complex heterogeneous structure are not always consistent with physical experiments and with each other. In this paper, we compare two failure criteria, i.e. the principal stress criterion and the von Mises yield criterion. Also, we compare two models of destruction formation, i.e. the model of fractures and sand model. Using the wave dynamics analysis, we explain the difference in the calculated zones of destruction. We indicate what differences in elastic wave phenomena cause the difference in the calculated fracture zones. We assume that further study of the connection between wave phenomena and destruction of materials will allow to develop more precise failure criteria. To carry out the research, we applied numerical modeling of spatial dynamic elastic wave processes in a nuclear power plant and enclosing rocks. We use the grid-characteristic method on combined regular and structural hexahedral grids to describe the complex shape of the dome of the nuclear power plant with minimal computational costs. Moreover, in this work, we consider an approach for calculating the contribution of dynamic elastic wave phenomena to seismic stability of facilities. This technique can be especially useful in the development and testing of seismic insulation of buildings. We propose a failure formation model that takes into account the contribution of static loads and dynamic loads separately.
机译:最近的研究表明,使用具有复杂异质结构的材料的各种失效标准计算的受损区域并不总是与物理实验和彼此一致。在本文中,我们比较两个故障标准,即主应力标准和von误差率标准。此外,我们比较了两种模型的破坏形成,即骨折和砂模型。使用波动态分析,我们解释了计算的破坏区域的差异。我们表明弹性波现象的差异导致计算的骨折区域的差异。我们认为,进一步研究波浪现象与材料破坏之间的联系将允许开发更精确的故障标准。开展研究,我们应用了核电站空间动态弹性波工艺的数值模型,封闭岩石。我们使用组合规则和结构六面栅格的网格特征方法来描述核电站圆顶的复杂形状,计算成本最小。此外,在这项工作中,我们考虑一种方法来计算动态弹性波现象对设施抗震稳定性的贡献。这种技术在建筑物的地震绝缘的开发和测试中特别有用。我们提出了一个失败的形成模型,考虑了静态负载和动态负载的贡献。

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