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The characterization of chloride effect on concrete water sorption and its application in the modelling of concrete conditions in tidal zones

机译:氯化物效应对混凝土吸水的特征及其在潮汐区混凝土条件建模中的应用

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Concrete exposed to cyclic wetting and drying in salty water conditions is thought to be subjected to an accelerated ingress of chloride from the outside environment, and prone to a worsening deterioration process inside. Additionally, there is an osmotic effect on salty water flow in porous concrete. However, so far, a fully profound understanding of the coupled cyclic wetting-drying and osmosis effects on the chloride movement in concrete is still limited. This paper reports on a comprehensive study on the topic. A series of experimental tests was conducted initially for the vapour-water sorption isotherm (VWSI) of normal concrete of different porosity and chloride content. Thereafter, a novel mathematical model was proposed and validated to characterise the effect of chloride salt on the vapour absorption and water retention behaviour of concrete. Finally, the proposed characteristic model was implemented in a numerical model to simulate chloride ingress in concrete in tidal zones. The vapour-water sorption isotherm model successfully provides an effective tool to quantify the coupled influence of cyclic wetting-drying and osmosis on chloride transportation in concrete. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在咸水条件下暴露于循环润湿和干燥的混凝土被认为是从外部环境中加速氯化物的加速进入,并且容易出于内部恶化的劣化过程。另外,对多孔混凝土中的咸水流动存在渗透效应。然而,到目前为止,对混凝土中氯化物运动的耦合循环润湿干燥和渗透作用的完全深刻的理解仍然有限。本文关于该主题的全面研究报告。最初对不同孔隙率和氯化物含量的正常混凝土的蒸汽吸附等温线(VWSI)进行了一系列实验试验。此后,提出并验证了一种新的数学模型,以表征氯化盐对混凝土蒸汽吸收和水保留行为的影响。最后,在一个数字模型中实施了所提出的特征模型,以模拟潮汐区混凝土中的氯化物进入。蒸汽吸附等温线模型成功提供了一种有效的工具,以量化循环润湿干燥和渗透对混凝土中氯化物的耦合影响。 (c)2020 elestvier有限公司保留所有权利。

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