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A meso-scale analysis of the hygro-thermo-chemical characteristics of early-age concrete

机译:早期混凝土的湿热化学特性的中尺度分析

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Concrete has a high degree of heterogeneity and a complex porous structure, so to accurately study the performance evolution mechanism of concrete, multi-scale research should be carried out. A three-phase meso-model of concrete is constructed based on the method of randomly generating particles. A mesomacro connection framework is built, and the accuracy of the fixed hygro-thermo-chemical model at the meso-scale is verified through comparing its outcomes with experimental data and macroscopic results. The hygro-thermo-chemical behaviours of early-age concrete at the meso-scale are studied under adiabatic -sealed, radiating-sealed and adiabatic-drying conditions, by considering the cooling effect of the aggregate, low diffusivity of the aggregate, high diffusivity of the interface transition layer and concrete gradation. Additionally, distribution and evolution of several eigenvalues, such as the relative humidity, are obtained. (C) 2018 Elsevier Ltd. All rights reserved.
机译:混凝土具有高度的异质性和复杂的多孔结构,因此,要准确研究混凝土的性能演变机理,应进行多方面的研究。基于随机产生颗粒的方法,建立了混凝土的三相细观模型。建立了介孔连接框架,并通过将其结果与实验数据和宏观结果进行比较,验证了中尺度上固定的湿热化学模型的准确性。通过考虑骨料的冷却作用,骨料的低扩散性,高扩散性,研究了在绝热密封,辐射密封和绝热干燥条件下中龄混凝土早期湿热化学行为。界面过渡层和混凝土的等级。另外,获得了一些特征值的分布和演化,例如相对湿度。 (C)2018 Elsevier Ltd.保留所有权利。

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