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Analysis of the parameters affecting probabilistic predictions of initiation time for carbonation-induced corrosion of reinforced concrete structures

机译:影响钢筋混凝土结构碳化引起腐蚀起始时间概率预测的参数分析

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摘要

Probabilistic approaches are available for service life design of reinforced concrete structures subjected to reinforcement corrosion. The International Federation for Structural Concrete (fib) has proposed a model code where design equations and related parameters, involving materials properties, exposure conditions and construction details, are reported. This paper investigates the role of design parameters in the prediction of service life by applying the fib design procedure to existing structures suffering carbonation-induced corrosion. Results of the modelling were compared to results of the inspection and a significant difference was observed. In order to investigate the reasons for this difference, the roles of concrete cover thickness and carbonation depth were considered separately in the modelling of service life. The concrete cover thickness had a significant effect on the output of the service life modelling, which however was not sufficient to explain the discrepancy between in situ and modelling results. The modelled values of carbonation depth were also affected by errors; sensitivity analysis showed that, although some parameters had higher influence than others, no single parameter had a predominant role.
机译:概率方法可用于遭受钢筋腐蚀的钢筋混凝土结构的使用寿命设计。国际结构混凝土联合会(fib)提出了一个模型代码,其中报告了涉及材料特性,暴露条件和施工细节的设计方程式和相关参数。本文通过将fib设计程序应用于遭受碳化诱导腐蚀的现有结构,研究了设计参数在使用寿命预测中的作用。将建模结果与检查结果进行比较,并观察到显着差异。为了研究造成这种差异的原因,在使用寿命模型中分别考虑了混凝土覆盖层厚度和碳化深度的作用。混凝土覆盖层的厚度对使用寿命建模的输出有显着影响,但是这不足以解释原位与建模结果之间的差异。碳化深度的模型值也受到误差的影响。敏感性分析表明,尽管某些参数的影响力大于其他参数,但没有一个参数起主要作用。

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