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A Condition-Based Deterioration Model for the Stochastic Dependency of Corrosion Rate and Crack Propagation in Corroded Concrete Structures

机译:腐蚀混凝土结构腐蚀速率和裂纹扩展随机相关性的基于条件的退化模型

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摘要

Physics-based models are intensively studied in mechanical and civil engineering but their constant increase in complexity makes them harder to use in a maintenance context, especially when degradation model can/should be updated from new inspection data. On the other hand, Markovian cumulative damage approaches such as Gamma processes seem promising; however, they suffer from lack of acceptability by the civil engineering community due to poor physics considerations. In this article, we want to promote an approach for modeling the degradation of structures and infrastructures for maintenance purposes which can be seen as an intermediate approach between physical models and probabilistic models. A new statistical, data-driven state-dependent model is proposed. The construction of the degradation model will be discussed within an application to the cracking of concrete due to chloride-induced corrosion. Numerical experiments will later be conducted to identify preliminary properties of the model in terms of statistical inferences. An estimation algorithm is proposed to estimate the parameters of the model in cases where databases suffer from irregularities.
机译:在机械和土木工程中对基于物理的模型进行了深入研究,但是它们不断增加的复杂性使其在维护环境中更难使用,尤其是当可以/应该根据新的检查数据更新退化模型时。另一方面,伽马过程等马尔可夫累积损伤方法似乎很有希望。然而,由于糟糕的物理考虑,他们遭受了土木工程界缺乏可接受性的困扰。在本文中,我们希望推广一种用于维护目的的结构和基础结构退化建模的方法,该方法可以看作是物理模型和概率模型之间的中间方法。提出了一种新的统计数据驱动的状态相关模型。降解模型的构建将在因氯化物引起的腐蚀导致混凝土开裂的应用中进行讨论。稍后将进行数值实验,以根据统计推断确定模型的初步属性。提出了一种估计算法,用于在数据库遭受不规则情况下估计模型的参数。

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