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Modeling of chloride transport coupled with enhanced moisture conductivity in concrete exposed to marine environment

机译:暴露在海洋环境中的混凝土中氯离子传输的模型以及增强的水分传导性

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摘要

In this research, the chloride penetration in concrete is modeled under marine environment loadings. Moisture migration model is enhanced to simulate the sorption flux under submerged wetting after long exposure to drying. The non-ideal viscosity of flow in the porous media is modified according to the nature of micro-pore structure by modeling the sensitivity of different porous networks (dense and coarse) to react towards the external environment. The strong sorption flux generated as a result of wetting and drying cyclic exposure is modeled by applying hydraulic pressure at the exposed surface. Chloride profiles are then simulated by coupling the enhanced moisture conductivity model with chloride transport model.
机译:在这项研究中,氯化物在混凝土中的渗透是在海洋环境载荷下模拟的。增强了水分迁移模型,以模拟长时间暴露于干燥后浸没湿润下的吸附通量。通过对不同多孔网络(致密和粗糙)对外部环境反应的敏感性进行建模,可根据微孔结构的性质修改多孔介质中流动的非理想粘度。通过在暴露表面施加水压来模拟由于润湿和干燥循环暴露而产生的强吸附通量。然后通过将增强的水分传导率模型与氯离子迁移模型耦合来模拟氯离子的分布。

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