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Modeling and Control of Localized Corrosion of Steel in Submerged Reinforced Concrete Structures

机译:沉入式钢筋混凝土结构中钢局部腐蚀的建模与控制

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摘要

A quantitative model to forecast corrosion damage in submerged concrete in marine environments is presented. The model incorporates Potential Dependent Threshold (PDT) features and determines the damage function for affected structures. The model has been validated via comparison with field examinations of extracted piles. The model is used to evaluate the influence of structural and material parameters on extent of corrosion damage plus the feasibility and benefits of deploying galvanic cathodic protection anodes for supplemental corrosion control over an extended service life period. Results indicate the propensity for severe localized corrosion (despite expected low average corrosion rates) given strong corrosion macrocell action facilitated by lower resistivity of water-saturated concrete. Results also contribute to an improved understanding of the underlying phenomena and identification of corrosion-related limit states that may be useful in the development of corrosion control methods.
机译:提出了一种预测海洋环境中浸没混凝土腐蚀破坏的定量模型。该模型结合了潜在依赖阈值(PDT)功能,并确定了受影响结构的损伤函数。该模型已通过与提取桩的现场检查进行比较而得到验证。该模型用于评估结构和材料参数对腐蚀破坏程度的影响,以及在较长的使用寿命内部署电化学阴极保护阳极进行补充腐蚀控制的可行性和益处。结果表明,由于水饱和混凝土的较低电阻率促进了强大的腐蚀宏单元作用,因此存在严重的局部腐蚀(尽管预期平均腐蚀速率较低)。结果还有助于更好地理解潜在现象,并确定与腐蚀有关的极限状态,这可能对开发腐蚀控制方法很有用。

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