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A new 2D continuous-discontinuous heat conduction model for modeling heat transfer and thermal cracking in quasi-brittle materials

机译:一种新的2D连续不连续的热传导模型,用于建模热传递和准脆性材料的热裂纹

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摘要

This paper proposes a new 2D continuous-discontinuous heat conduction model to simulate heat transfer and thermal cracking in fractured quasi-brittle materials by combining with mechanical calculations of the FiniteDiscrete Element Method. By updating the sharing relationship of the nodes at the cracks, the model can accurately predict the temperature evolution, crack propagation and considers the effect of cracking on heat conduction. We verified the correctness of the continuous-discontinuous heat conduction model using examples of heat conduction in a continuum, media with single or multiple cracks, thermal deformation problems, and cracking induced by temperature gradient and thermal mismatch. The numerical results indicate that the continuous-discontinuous heat conduction model well reflects the effect of crack propagation on heat conduction and the discontinuity of temperature across the cracks. It provides a powerful tool for studying the whole process and mechanism analysis of thermal cracking of quasi-brittle materials.
机译:本文提出了一种新的2D连续不连续的导热模型,通过与机械计算的机械计算相结合模拟裂缝准脆性材料的热传递和热裂纹。通过更新裂缝处节点的共享关系,模型可以准确地预测温度演化,裂纹传播,并考虑开裂对热传导的影响。我们使用连续内的导热实例,具有单个或多个裂缝,热变形问题和通过温度梯度和热不匹配引起的裂缝的介质的实例验证了连续不连续的导热模型的正确性。数值结果表明,连续不连续的导热模型很好地反映了裂纹传播对热传导和裂缝中温度的不连续性的影响。它为研究了准脆性材料热破裂的全过程和机制分析提供了一种强大的工具。

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