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A coupled discrete-continuum approach to simulate moisture effects on damage processes in porous materials

机译:耦合离散连续谱方法,模拟水分对多孔材料破坏过程的影响

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摘要

In the present paper, a coupled model for the prediction of damage under hygro-mechanical loading is developed. The model combines a mechanical and a moisture transport model within a poromechanical framework. Damage is incorporated by embedded displacement discontinuities, allowing an accurate prediction of the crack path within a coarse finite element mesh. To simulate the preferential wetting around a crack, a discrete front tracking method to predict the fluid transport through cracks is incorporated in a continuous moisture transport model. The computational features and capabilities of the coupled model and the effects of moisture on dimensional stability, crack opening evolution and cracking behaviour are illustrated with different examples of combined mechanical and moisture loading during three point bending tests on a fictitious sandstone.
机译:在本文中,建立了一种在湿-机械载荷作用下的损伤预测的耦合模型。该模型在poromechanical框架内结合了机械模型和水分传输模型。嵌入的位移不连续性会导致损坏,从而可以精确预测粗糙有限元网格内的裂纹路径。为了模拟裂纹周围的优先润湿,在连续的水分传输模型中采用了一种离散的前沿跟踪方法来预测流体通过裂纹的传输。通过在虚拟砂岩上进行三点弯曲试验时,结合机械载荷和水分载荷的不同示例,说明了耦合模型的计算特征和功能以及水分对尺寸稳定性,裂纹扩展演变和破裂行为的影响。

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