Deterioration of steel structures due to corrosion considering the global effects of climate change

Mohammad F. Tamimi, Ammar A. Alshannaq, Mu’ath I. AbuQamar
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Abstract

The randomness of atmospheric conditions is among the key contributing factors that affect the ability to accurately predict the corrosion growth in steel structures. Climate change has the potential to alter the long-term characteristics of these factors over the lifespan of steel structures, both those already existing and those newly built. The impact of climate variability on the stochastic nature of atmospheric variables, which greatly influence corrosion conditions, can add complexity to corrosion predictions in these structures. This paper introduces an integrated framework to quantify the impact of climate change on corrosion rates of steel structures worldwide. It considers the changes in environmental conditions, specifically temperature, relative humidity and wind speed and their effects on atmospheric corrosion. Global Climate Models are employed to evaluate the long-term impacts of climate change on these environmental conditions. An analytical model for predicting corrosion rate is integrated with climate change models to predict alterations in the corrosion rates of steel components relative to historical conditions. This paper also discusses the impact of climate change on the variations of these climatic parameters and offers a comparison between historical data and projected conditions across the globe. The results indicate that the effect of climate change on the corrosion rate depends on the considered region. While regions such as Australia, North America and Europe see an increase, others such as Asia and Africa observe a decline. Notably, all oceans, especially the Antarctic and Arctic, experience a significant increase in corrosion by the end of the century.
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考虑到气候变化对全球的影响,钢结构因腐蚀而退化
大气条件的随机性是影响准确预测钢结构腐蚀增长的关键因素之一。气候变化有可能改变这些因素在钢结构(包括现有钢结构和新建钢结构)寿命期内的长期特性。气候多变性对大气变量随机性的影响极大地影响了腐蚀条件,从而增加了这些结构腐蚀预测的复杂性。本文介绍了一个综合框架,用于量化气候变化对全球钢结构腐蚀率的影响。它考虑了环境条件的变化,特别是温度、相对湿度和风速及其对大气腐蚀的影响。采用全球气候模型来评估气候变化对这些环境条件的长期影响。预测腐蚀速率的分析模型与气候变化模型相结合,以预测相对于历史条件的钢铁部件腐蚀速率的变化。本文还讨论了气候变化对这些气候参数变化的影响,并对全球历史数据和预测条件进行了比较。结果表明,气候变化对腐蚀率的影响取决于所考虑的地区。澳大利亚、北美和欧洲等地区的腐蚀率有所上升,而亚洲和非洲等地区的腐蚀率则有所下降。值得注意的是,到本世纪末,所有海洋,尤其是南极和北极的腐蚀率都会显著增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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