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A probabilistic upscaling of microstructural randomness in modeling mesoscale elastic properties of concrete

机译:混凝土型介质弹性性能下微观结构随机性的概率上升

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We present a modeling framework for propagating the uncertainty, stemming from random heterogeneity of concrete microstructure, to its mesoscale elastic properties at the level of statistical volume element. The microstructure of concrete is modeled as a three-phase composite, consisting of aggregates (inclusions) in mortar (matrix), and interfacial transition zone (ITZ), a thin high porosity zone surrounding aggregates. There is inherent randomness in the composition and mechanical properties of these constituents, which in turn causes spatial heterogeneity in the local material behavior. We present a statistical characterization process to quantify the uncertainty associated with local aggregate volume fraction and aggregate size distribution. We then adopt and test a probabilistic model based on the random matrix theory and maximum entropy principle to construct a stochastic description for bounded apparent elasticity tensors at the mesoscale level, in which the bounds are obtained through a computational calibration process based on the theory of micromechanics and numerical homogenization. The framework provides an efficient way to model and simulate the local statistical fluctuations of material properties that are linked to phenomena occurring at the subscale level of heterogeneity. (C) 2020 Elsevier Ltd. All rights reserved.
机译:我们提出了一种用于传播不确定性的建模框架,从混凝土微观结构的随机异质性中置于统计体积元件水平的中尺度弹性特性。混凝土的微观结构被建模为三相复合材料,由砂浆(基质)中的聚集体(夹杂物)和界面过渡区(ITZ)组成,围绕聚集体的薄高孔隙率区域。这些成分的组合物和机械性能存在固有的随机性,这反过来导致局部材料行为中的空间异质性。我们提出了统计表征过程,以量化与局部聚集体积分数和骨料大小分布相关的不确定性。然后,我们采用并测试基于随机矩阵理论的概率模型和最大熵原理,以构建Messcale水平的有界性视性弹性张量的随机描述,其中通过基于微机械理论的计算校准过程获得界限和数值均质化。该框架提供了一种有效的方式来模拟和模拟材料特性的局部统计波动,这些统计学属性与在异质性的次级性水平上发生的现象。 (c)2020 elestvier有限公司保留所有权利。

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