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Modeling of cohesive crack growth in partially saturated porous media; a study on the permeability of cohesive fracture

机译:在部分饱和的多孔介质中内聚裂纹扩展的建模;黏性裂缝渗透性研究

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摘要

Modeling the water flow in cohesive fracture is a fundamental issue in the crack growth simulation of cracked concrete gravity dams and hydraulic fracture problems. In this paper, a mathematical model is presented for the analysis of fracture propagation in the semi-saturated porous media. The solid behavior incorporates a discrete cohesive fracture model, coupled with the flow in porous media through the fracture network. The double-nodded zero-thickness cohesive interface element is employed for the mixed mode fracture behavior in tension and contact behavior in compression. The modified crack permeability is applied in fracture propagation based on the data obtained from experimental results to implement the roughness of fracture walls.
机译:粘性裂缝中的水流建模是裂缝混凝土重力坝裂缝扩展模拟和水力裂缝问题中的一个基本问题。本文提出了一种数学模型,用于分析半饱和多孔介质中的裂缝扩展。实体行为包含离散的内聚破裂模型,以及通过裂缝网络在多孔介质中的流动。双点零厚度内聚界面元用于拉伸时的混合模式断裂行为和压缩时的接触行为。根据实验结果获得的数据,将改进的裂缝渗透率应用于裂缝扩展,以实现裂缝壁的粗糙度。

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