采用基于水平集的方法对模型水泥水化进行数值模拟

IF 10.9 1区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
Long Nguyen-Tuan, Florian Kleiner, Christiane Rößler, Horst-Michael Ludwig
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引用次数: 0

摘要

能够捕捉现实特征的微观结构模型在促进我们对混凝土性能的了解方面发挥着关键作用。本文提出了一种基于水平集方法的计算机模型,用于模拟水泥水化过程中的相变。该模型利用水平集函数重建水泥浆的真实微观结构,特别是 C-S-H 的纤维状。同时再现了粘合剂相的溶解以及内外 C-S-H 和波长石等产物相的形成,包括反应动力学。这样就可以量化体积相的变化,包括作为气隙的化学收缩。通过改变模型参数,可以研究各相之间的几何相互作用,如粘结剂相和水合产物。二维模拟与实验数据之间的比较表明,基于水平集的模型是模拟水泥水化过程中微观结构演变的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical simulation of model cement hydration using level set based method

Microstructural modelling that captures realistic features plays a key role in advancing our knowledge of concrete properties. This paper proposes a computer model based on the level set method to simulate the phase transformation during cement hydration. The model uses the level set function to reconstruct a realistic microstructure of the cement paste, specifically the fibrous form of C-S-H. The dissolution of binder phases as well as the formation of product phases such as inner and outer C-S-H, and portlandite including reaction kinetics are simultaneously reproduced. This allows the quantification of the volumetric phase changes, including chemical shrinkage as air voids. Variation of model parameters allows the investigation of geometrical interactions between phases, such as binder phases and hydrated products. The comparison between two-dimensional simulation and experimental data demonstrates that the level set based model is a promising method for modelling the microstructural evolution during cement hydration.

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来源期刊
Cement and Concrete Research
Cement and Concrete Research 工程技术-材料科学:综合
CiteScore
20.90
自引率
12.30%
发文量
318
审稿时长
53 days
期刊介绍: Cement and Concrete Research is dedicated to publishing top-notch research on the materials science and engineering of cement, cement composites, mortars, concrete, and related materials incorporating cement or other mineral binders. The journal prioritizes reporting significant findings in research on the properties and performance of cementitious materials. It also covers novel experimental techniques, the latest analytical and modeling methods, examination and diagnosis of actual cement and concrete structures, and the exploration of potential improvements in materials.
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