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Concrete structures under combined mechanical and environmental actions: Modelling of durability and reliability

机译:机械和环境作用下的混凝土结构:耐久性和可靠性建模

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Service life assessments which do not include the synergy between mechanical and environmental loading are neglecting a factor that can have a significant impact on structural safety and durability assessment. The degradation of concrete structure is a result of the combined effect of environmental and mechanical factors. In order to make service life design realistic it is necessary to consider both of these factors acting simultaneously. This paper deals with the advanced modelling of concrete carbonation and chloride ingress into concrete using stochastic 1D and 2D models. Widely accepted models incorporated into the new fib Model Code 2010 are extended to include factors that reflect the coupled effects of mechanical and environmental loads on the durability and reliability of reinforced concrete structures. An example of cooling tower degradation by carbonation and an example of a bended reinforced concrete beam kept for several years in salt fog are numerically studied to show the capability of the stochastic approach. The modelled degradation measures are compared with experimental results, leading to good agreement.
机译:不包括机械载荷和环境载荷之间协同作用的使用寿命评估忽略了一个可能对结构安全性和耐久性评估产生重大影响的因素。混凝土结构的退化是环境和机械因素共同作用的结果。为了使使用寿命设计切实可行,有必要同时考虑这两个因素。本文使用随机的一维和二维模型处理混凝土碳化和氯化物进入混凝土的高级模型。新的fib模型代码2010中所包含的模型已得到广泛认可,并扩展到包括反映机械和环境载荷对钢筋混凝土结构的耐久性和可靠性的耦合影响的因素。数值研究了一个因碳化而使冷却塔退化的例子,以及一个在盐雾中保持了几年的弯曲钢筋混凝土梁的例子,以显示随机方法的能力。将模拟的降解措施与实验结果进行比较,得出了很好的一致性。

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