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Probabilistic approach for durability design of reinforced concrete in marine environment

机译:海洋环境下钢筋混凝土耐久性设计的概率方法

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摘要

A probabilistic approach to durability is proposed for the design of reinforced cover of a concrete immersed in sea water. It uses a non-linear chloride diffusion model for a saturated medium, which is first exposed with its physical parameters. Parameter variability is estimated and used through the probabilistic approach to assess the probability of reaching a critical chloride concentration near the reinforcement for a given service life. Based on the concrete formulation and the cement chemical composition, the model parameters are evaluated with their associated random distribution. The corrosion risk is then estimated through the Hasofer-Lind reliability index. Currently, the methodology is available for Ordinary Portland Cement (OPC) and for saturated media. A practical application is proposed to underline the applicability of the methodology. The decrease in the reliability index with time is computed for a cover depth coming from actual design rules. The probabilistic sensitivity factors are also assessed and show the importance of some model parameters called "durability indicators".
机译:提出了一种概率性耐久性方法,用于设计浸泡在海水中的混凝土的增强覆盖层。它对饱和介质使用非线性氯离子扩散模型,该模型首先会暴露其物理参数。估计参数的可变性,并通过概率方法将其用于评估在给定使用寿命内在钢筋附近达到临界氯化物浓度的可能性。根据混凝土配方和水泥化学成分,对模型参数及其相关的随机分布进行评估。然后通过Hasofer-Lind可靠性指标估算腐蚀风险。当前,该方法可用于普通波特兰水泥(OPC)和饱和介质。提出了一种实际应用,以强调该方法的适用性。对于来自实际设计规则的覆盖深度,计算了可靠性指标随时间的降低。还评估了概率敏感性因子,并显示了某些模型参数(称为“耐久性指标”)的重要性。

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