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Three-dimensional analysis of a cohesive crack coupled with heat flux through the crack

机译:粘性裂纹的三维分析以及通过裂纹的热通量

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This paper presents an algorithm for coupling cohesive crack modeling with non-stationary heat flow. Firstly, the nonlinear system of equation, based on global formulations, for such a computational model is derived. The nonlinearity here comes from nonlinear relations in the crack. The relations refer to cohesion forces and to heat flux which both depend of crack opening and additionally are dependent of temperature difference between both sides of the crack. In the paper the discontinuities of displacement field and temperature field are both approximated using XFEM. All the analysis concerning crack surface is performed using local coordinate systems for each integration point. The local coordinate system is two-dimensional for both 2D and 3D analysis. The paper is illustrated with non-stationary thermo-mechanical examples for a domain with propagating crack.
机译:本文提出了一种将粘性裂纹建模与非平稳热流耦合的算法。首先,基于整体公式推导了这种计算模型的非线性方程组。这里的非线性来自裂纹中的非线性关系。该关系涉及内聚力和热通量,它们既取决于裂纹的开度,又取决于裂纹两侧之间的温差。在本文中,位移场和温度场的不连续性都使用XFEM进行了近似。所有裂纹表面分析都是使用局部坐标系对每个积分点进行的。局部坐标系是二维的,用于2D和3D分析。本文用非平稳的热力学示例说明了裂纹扩展区域。

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