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Multibody approach for reactive transport modeling in discontinuous-heterogeneous porous media

机译:不连续异构多孔介质反应运输建模的多体方法

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In the context of long-term degradation of porous media, the coupling between fracture mechanics and reactive transport is investigated. A reactive transport model in a cracked discontinuous and heterogeneous porous medium is proposed. The species transport through and along the crack network are taken into account in a multibody approach. A dedicated geochemistry solver is developed and allows to take into account a significant number of chemical reactions. The model is validated via a benchmark for a porous medium without discontinuity. The applications deal with two kinds of chemical attacks in a pre-cracked concrete sample and highlight the impact of the discontinuities in the reactive transport kinetic and on the localization of the chemical degradation. The results bring out that a unidirectional descriptor, such as the depth of ingress rate, is not sufficient to describe the material degradation correctly.
机译:在多孔介质的长期降解的背景下,研究了骨折力学和反应性之间的偶联。 提出了一种裂化的不连续和异质多孔介质中的反应运输模型。 通过多体方法考虑物种通过和沿着裂缝网络进行运输。 开发了专用地球化学求解器,并允许考虑大量的化学反应。 该模型通过不连续的多孔介质的基准验证。 该应用涉及预破裂的混凝土样本中的两种化学攻击,并突出了不连续性在反应性动力学中的影响以及化学降解的定位。 结果引发了一种单向描述符,例如进入率的深度,不足以描述材料劣化。

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