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Analysis of surface deterioration of Concrete in Cold Sea Environment by Reliability Analysis

机译:用可靠性分析法分析冷海环境下混凝土表面的劣化。

摘要

Predictions of the service life of concrete structures are an important part of maintenance,management,and durability design. One essential aspect of this is deterioration prediction. The purpose of this study is to theoretically examine the question of deterioration prediction using reliability theory. As an example, reliability theory is applied to the problem of scaling using survey data taken from exposure tests in a cold marine environment. The exposed specimens have a concrete cover of 80 mm, and the scaling deterioration limit is assumed to be 20 mm. Hazard levels are set up at 1/10 and 1/20 of this limit,corresponding to 2 mm and 1 mm, respectively.  From this examination, we conclude that the Weibull distribution gives the best fit to the frequency distribution of scaling that exceeds the hazard level in depth. Covariate variables of the reliability function were extracted, and water-cement ratio and Fe_2O_3 were selected for study since their significance level was within 1%. The coefficient for water-cement ratio was found to be negative, while that for Fe_2O_3 was positive. The time taken for scaling to reach the hazard level was found to be approximately the same as required to reach the 50 %reliability level, thus confirming the validity of this method of reliability analysis
机译:对混凝土结构使用寿命的预测是维护,管理和耐久性设计的重要组成部分。其中一个重要方面是劣化预测。本研究的目的是从理论上检验使用可靠性理论进行的劣化预测问题。例如,使用从寒冷的海洋环境中的暴露测试获得的调查数据将可靠性理论应用于结垢问题。裸露的试样的混凝土覆盖层为80毫米,并且氧化皮劣化极限为20毫米。危险等级设置为该限制的1/10和1/20,分别对应于2 mm和1 mm。从这次检查中,我们得出的结论是,威布尔分布与深度超过危险等级的结垢频率分布最匹配。提取可靠性函数的协变量,选择水灰比和Fe_2O_3,因为它们的显着性水平在1%以内。发现水灰比系数为负,而Fe_2O_3的系数为正。发现扩展到危险等级所需的时间与达到50%可靠性等级所需的时间大致相同,从而证实了这种可靠性分析方法的有效性

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