Browse > Article
http://dx.doi.org/10.14346/JKOSOS.2015.30.6.102

Field Research for the Durability Assessment Factor for deriving the Carbonation of Concrete Bridges in the Marine Environment  

Chai, Won-Kyu (Department of Civil Engineering, Shingu University)
Lee, Myeong-Gu (Department of Environmental Health and Safety, Eulji University)
Son, Young-Hyun (Seolim, Co. Ltd.)
Publication Information
Journal of the Korean Society of Safety / v.30, no.6, 2015 , pp. 102-109 More about this Journal
Abstract
In this study, on the basis of the results of the field survey and the theoretical consideration for Korean Standard Specification for concrete durability and maintenance, the following conclusions are derived. From the survey, the prediction equation of carbonation depth for the southwest region in Korea is experimentally proposed, $y_p=5.865{\sqrt{t}}$, which predicts about 60mm of the carbonation depth for the concrete structures of 100 years, a 1st class of target endurance period, under a combined deterioration environment like a marine environment. Considering that the marginal value for a carbonation depth limitation under very severely marine environment is 25mm, in accordance with the Specification, it is found that the predicting carbonation depth for the concrete cover depths, 100mm and 60mm are 63mm and 29.4mm, respectively. In conclusion, according to the equation and the Specification, it is strongly required that the reinforced concrete structures with the cover depth under 100mm have to make a protection from combined deterioration factors by any methods like a surface coating, an increment of cover depth or an application of a special concrete.
Keywords
carbonation; carbonation rate coefficient; carbonation depth; concrete standard specification;
Citations & Related Records
연도 인용수 순위
  • Reference
1 Highway Bridges Standard Specification, Korean Society of Civil Engineers, pp. 149-150, 1992.
2 Highway Bridges Standard Specification, Korean Society of Civil Engineers, 1996.
3 Concrete Standard Specification, Korean Society of Civil Engineers, pp. 156-158, 1996.
4 Concrete Standard Specification Durable Side, the Ministry of Construction and Transportation, pp. 3-6, 2004.
5 Concrete Standard Specification Durable Side, the Ministry of Construction and Transportation, p. 5, 2004.
6 Concrete Standard Specification Durable Side, the Ministry of Construction and Transportation, pp. 1-2, 2004.
7 Korea Concrete Institute, Durability Design of Reinforced Concrete Structures for the Salt and the Carbonation, Construction and Maintenance Instructions(plan), 2002.
8 Concrete Standard Specification Durable Side, the Ministry of Construction and Transportation, pp. 12-13, 2004.
9 Concrete Standard Specification Durable Side, the Ministry of Construction and Transportation, pp. 33-34, 2004.