碳化作用
材料科学
扩散
相对湿度
水分
扩散过程
复合材料
抗压强度
热力学
创新扩散
计算机科学
知识管理
物理
作者
Chuanqing Fu,Hailong Ye,Xianyu Jin,Nanguo Jin,Lingli Gong
出处
期刊:Computers and Concrete
日期:2015-05-25
卷期号:15 (5): 847-864
被引量:10
标识
DOI:10.12989/cac.2015.15.5.847
摘要
In this paper, a reaction-diffusion model of carbonation process in self-compacting concrete (SCC) was realized with a consideration of multi-field couplings. Various effects from environmental conditions, e.g. ambient temperature, relative humidity, carbonation reaction, were incorporated into a numerical simulation proposed by ANSYS. In addition, the carbonation process of SCC was experimentally investigated and compared with a conventionally vibrated concrete (CVC). It is found that SCC has a higher carbonation resistance than CVC with a comparable compressive strength. The numerical solution analysis agrees well with the test results, indicating that the proposed model is appropriate to calculate and predict the carbonation process in SCC. The parameters sensitivity analysis also shows that the carbon dioxide diffusion coefficient and moisture field are essentially crucial to the carbonation process in SCC.
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