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Numerical simulations for time-dependent corrosion surfaces of unpainted carbon steel plates in atmospheric corrosive environments using spatial statistical techniques

机译:基于空间统计技术的大气腐蚀环境下未上漆碳钢板瞬态腐蚀表面的数值模拟

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Many severe corrosion damages have been reported in steel structures constructed in a period of high economic growth. To ensure the safety of such structures, it is important to devise a method how corrosion develops in the service. However, method of predicting such behavior has not yet been established. In this research, semi-vari-ogram analyses were carried out on time-dependent corrosion surfaces of unpainted steel plates exposed to atmospheric environment to clarify the spatial autocorrelation structures and their time-dependence. In addition to this, by using the autocorrelation structures and an ordinary kriging technique, method of spatial statistical simulation for the time-dependent corrosion surfaces in various atmospheric corrosive environments was proposed. Moreover, example of the relationship between mean and maximum corrosion depths was proposed on the basis of simulated results of time-dependent corrosion surfaces of unpainted carbon steel plates.
机译:据报道,在经济高速增长时期建造的钢结构中发生了许多严重的腐蚀损坏。为了确保这种结构的安全,重要的是要设计一种在服务中腐蚀如何发展的方法。然而,预测这种行为的方法尚未建立。本研究对暴露于大气环境的未上漆钢板的时态腐蚀表面进行了半变异图分析,以阐明其空间自相关结构及其时态。此外,利用自相关结构和普通克里金法,提出了各种大气腐蚀环境下瞬态腐蚀表面的空间统计模拟方法。此外,在模拟结果的基础上,提出了平均腐蚀深度与最大腐蚀深度之间关系的算例。

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