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Mesoscopic study of concrete I: generation of random aggregate structure and finite element mesh

机译:混凝土的细观研究I:随机骨料结构和有限元网格的生成

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摘要

Concrete is a composite material with a variety of inhomogeneities. Its composite behavior may be studied analytically using the mesoscopic approach which treats the concrete as a three-phase system consisting of coarse aggregated, mortar matrix with fine aggregate dissolved in it, and interfacial zones between the coarse aggregate and the mortar matrix. For such mesoscopic study, it is first necessary to generate a random aggregate structure in which the shape, size and distribution of the aggregate particles resemble real concrete in the statistical sense. Then, if the composite structure is to be analyzed by the finite element method, a mesh for each of the three phases needs to be generated. In this paper, a procedure for generating random aggregate structures for rounded and angular aggregates based on the Monte Carlo random sampling principle is proposed and a method of mesh generation using the advancing front approach is developed. These are combined with a nonlinear finite element method for mesoscopic study of concrete whose methodology and results will be presented in part II of the paper.
机译:混凝土是具有多种不均匀性的复合材料。可以使用介观方法对混凝土的复合性能进行分析研究,该方法将混凝土视为由粗骨料,溶解有细骨料的砂浆基质以及粗骨料和砂浆基质之间的界面区域组成的三相体系。对于这样的介观研究,首先必须生成随机的骨料结构,其中,骨料颗粒的形状,大小和分布在统计学意义上类似于真实的混凝土。然后,如果要通过有限元方法分析复合结构,则需要生成三个相中每个相的网格。提出了一种基于蒙特卡洛随机采样原理的圆形和角形聚集体随机聚集体生成方法,并提出了一种基于前锋方法的网格生成方法。这些与非线性有限元方法相结合,用于混凝土的介观研究,其方法和结果将在本文的第二部分中介绍。

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