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Mathematical modeling and numerical study of carbonation in porous concrete materials

机译:多孔混凝土材料碳化的数学模型与数值研究

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摘要

In this paper, a mathematical model of carbonation process in porous concrete materials is proposed. Based on physio-chemical mechanisms, the whole process can be viewed as the multi-component flow coupled the carbon dioxide-moisture-calcium ion transport. The rate of calcium hydroxide dissolution and mass equations are modified to get better descriptions on the physical conservation. An uncoupled finite volume method is proposed to solve the nonlinear parabolic system. Numerical simulations under the normal carbonation condition and the accelerated carbonation condition are presented and analyzed, respectively. (C) 2016 Elsevier Inc. All rights reserved.
机译:本文提出了多孔混凝土材料碳化过程的数学模型。基于理化机制,整个过程可以看作是多组分流与二氧化碳-水分-钙离子迁移的耦合。修改了氢氧化钙的溶解速率和质量方程,以获得关于物理守恒的更好描述。提出了一种解耦有限体积法来求解非线性抛物方程组。分别对正常碳酸化条件和加速碳酸化条件下的数值模拟进行了分析。 (C)2016 Elsevier Inc.保留所有权利。

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