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Numerical Study on Diffusion of Chloride and Induced Rebar Corrosion by Two-Dimensional Multiscale Approach

机译:二维多尺度方法对氯化物扩散和钢筋腐蚀的数值研究

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Modeling approach for mesoscopic model of concrete depicting mass transportation and physicochemical reaction is important since there is growing demand for accuracy and computational efficiency of numerical simulation. Mesoscopic numerical simulation considering binder, aggregate, and interfacial transition zone (ITZ) generally produces huge number of DOFs, which is inapplicable for full structure. In this paper, a two-dimensional multiscale approach describing three-phase structure of concrete was discussed numerically. An effective approach generating random aggregate in polygon based on checking centroid distance and intersection of line segment was introduced. Moreover, ITZ elements were built by parallel expanding the edge of aggregates on inner side. By combining mesoscopic model including full-graded aggregate and macroscopic model, cases related to diffusivity and width of ITZ, volume fraction, and grade of aggregate were studied regarding the consideration of multiscale compensation. Result clearly showed that larger analysis model in multiscale model expanded the diffusion space of chloride ion and decreased chloride content in front of rebar. Finally, this paper addressed some noteworthy conclusions about the chloride distribution and rebar corrosion regarding the configuration of rebar diameter, concrete cover, and exposure period.
机译:描述数值传输和物理化学反应的介观混凝土模型的建模方法很重要,因为对数值模拟的准确性和计算效率的需求不断增长。考虑粘结剂,骨料和界面过渡区(ITZ)的介观数值模拟通常会产生大量的自由度,不适用于完整结构。本文对二维描述混凝土三相结构的二维多尺度方法进行了数值讨论。引入了一种有效的方法,该方法基于检查质心距离和线段的交点在多边形中生成随机聚集体。此外,通过平行扩展集料的内侧边缘来构建ITZ元素。通过将包括全等级聚合体在内的介观模型与宏观模型相结合,研究了考虑多尺度补偿的与ITZ的扩散率和宽度,体积分数和聚合体等级有关的情况。结果清楚地表明,多尺度模型中较大的分析模型扩大了氯离子的扩散空间,并降低了钢筋前端的氯含量。最后,本文提出了一些关于氯化物分布和钢筋腐蚀的值得注意的结论,这些结论涉及钢筋直径,混凝土保护层和暴露时间的配置。

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