首页> 外文期刊>Journal of marine science and technology >TIME/DEPTH DEPENDENT DIFFUSION-COVECTION MODEL OF CHLORIDE WITH TRANSPORTATION IN CONCRETE STRUCTURES WITH CHLORIDE-BINDING ISOTHERMS
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TIME/DEPTH DEPENDENT DIFFUSION-COVECTION MODEL OF CHLORIDE WITH TRANSPORTATION IN CONCRETE STRUCTURES WITH CHLORIDE-BINDING ISOTHERMS

机译:含氯结合等温线的混凝土结构中含运输的氯化物时/深度相关扩散-对流模型

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摘要

Ion transport through a hydrated cement system often becomes a principal factor to degrade concrete in a chlorideladen environments. Based on the transport mechanism of chloride ion, an analytical solution of mathematical model for predicting chloride penetration into concrete structures was herein derived: The model consists of both the diffusion of chloride due to concentration gradient and the convection of chloride due to moisture transport. The model also depends on temperature, age, relative humidity, and chloride binding. Based on both the diffusion coefficient and the mean velocity with time/depth dependence, an analytical solution of the mathematical model developed by previous researchers was solemnly derived and used to predict the properties of concrete structures contaminated by chloride. The chloride penetration decreases as the time-dependence ratio increases. The amount of chloride accumulated in concrete increases as the relative humidity increases. Moreover, the proposed model may be effectively used for the practical evaluation and design for durability of concrete structures.
机译:通过水合水泥系统的离子运输通常成为在含氯环境中降解混凝土的主要因素。基于氯离子的迁移机理,推导了预测氯离子渗透到混凝土结构中的数学模型的解析解:该模型既包括浓度梯度引起的氯离子扩散,也包括水分迁移引起的氯离子对流。该模型还取决于温度,年龄,相对湿度和氯化物结合力。基于扩散系数和具有时间/深度依赖性的平均速度,郑重得出了先前研究人员开发的数学模型的解析解,并将其用于预测受氯污染的混凝土结构的性能。氯化物渗透随着时间依赖性比率的增加而降低。随着相对湿度的增加,混凝土中积累的氯化物数量也增加。此外,所提出的模型可以有效地用于混凝土结构耐久性的实际评估和设计。

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