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Numerical modeling for predicting service life of reinforced concrete structures exposed to chloride environments

机译:预测暴露于氯化物环境下的钢筋混凝土结构使用寿命的数值模型

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摘要

Degradation of reinforced concrete (RC) structures due to chloride penetration followed by reinforcement corrosion has been a serious problem in civil engineering for many years. In the present paper, a systematic and robust model for predicting service life of RC structures is developed which takes environmental humidity and temperature fluctuations, chloride binding, diffusion and convection, as well as the decay of structural performance into account. The interactions between the decay of structural performance, heat and moisture transfer are considered in a coupled thermal-hygro-mechanical model. The governing equations of heat, moisture and chloride transport into nonsaturated concrete are described particularly and solved numerically by finite element analysis in space and time domains. Comparisons of numerical results with analytical solutions and experimental observations are conducted to establish the validity of the proposed numerical model. Applications of the numerical model are demonstrated by predicting service life of a RC slab exposed to a chloride environment.
机译:多年来,由于氯化物的渗透以及钢筋锈蚀而导致的钢筋混凝土(RC)结构退化一直是土木工程中的严重问题。在本文中,建立了一个系统的,鲁棒的预测RC结构使用寿命的模型,该模型考虑了环境湿度和温度波动,氯离子结合,扩散和对流以及结构性能的下降。在耦合的热湿力学模型中考虑了结构性能的衰减,热量和水分传递之间的相互作用。特别描述了热量,水分和氯化物输送到非饱和混凝土中的控制方程,并通过时域和时域有限元分析对其进行了数值求解。将数值结果与解析解和实验观测值进行比较,以建立所提出数值模型的有效性。通过预测暴露在氯化物环境下的RC板的使用寿命,可以证明该数值模型的应用。

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