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Sensitivity analysis of simplified diffusion-based corrosion initiation model of concrete structures exposed to chlorides

机译:氯接触混凝土结构基于扩散的简化腐蚀引发模型的敏感性分析

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This paper presents the results of a sensitivity analysis of the diffusion-based corrosion initiation model for reinforced concrete structures built in chloride-laden environments. Analytical differentiation techniques are used to determine the sensitivity of the time to corrosion initiation to the four governing parameters of the model, which include chloride diffusivity in concrete, chloride threshold level of steel reinforcement, concrete cover depth, and surface chloride concentration. For conventional carbon steel, the time to corrosion initiation is found to be most sensitive to concrete cover depth, followed by chloride diffusion coefficient, with normalized sensitivity coefficients of about 2 and -1. For corrosion resistant steels, the time to corrosion initiation is most sensitive to the surface chloride concentration and chloride threshold level followed by the concrete cover depth and chloride diffusion coefficient. The results of this sensitivity analysis are discussed in detail, including the variations in predicted time to corrosion initiation induced by variations of the four model parameters and their implications for the design and maintenance of concrete structures built in corrosive environments.
机译:本文介绍了在含氯环境中建造的钢筋混凝土结构基于扩散的腐蚀引发模型的敏感性分析结果。分析微分技术可用于确定腐蚀开始时间对模型的四个控制参数的敏感性,其中包括混凝土中的氯化物扩散率,钢筋的氯化物阈值水平,混凝土覆盖层深度和表面氯化物浓度。对于常规碳钢,发现开始腐蚀的时间对混凝土覆盖层深度最敏感,其次是氯化物扩散系数,归一化敏感系数约为2和-1。对于耐腐蚀钢,腐蚀开始的时间对表面氯化物浓度和氯化物阈值水平,然后是混凝土覆盖层深度和氯化物扩散系数最敏感。详细讨论了这种敏感性分析的结果,包括由四个模型参数的变化引起的预计的腐蚀开始时间的变化,以及它们对腐蚀环境中建造的混凝土结构的设计和维护的影响。

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