과제정보
연구 과제 주관 기관 : 한국연구재단
참고문헌
- De Jesus, R., Collado, J., Go, J., Rosanto, M., & Tan, J. (2017). Modelling of carbonation of reinforced concrete structures in intramuros, manila using artificial neural network, International Journal of GEOMATE, 13(35), 87-92.
- Kellouche, Y., Boukhatem, B., Ghrici, M., & Tagnit-Hamou, A. (2017). Exploring the major factors affecting fly-ash concrete carbonation using artificial neural network, Neural Computing and Applications, 1-20.
- Architectural Institute of Japan. (2016) Recommendations for durability design and construction practice of reinforced concrete buildings. 2nd ed. Tokyo(Japan): Architectural Institute of Japan; 98-126.
- Cho, H., Ju, H., Oh, J., Lee, K., Hahm, K., & Kim, K. (2016). Estimation of concrete carbonation depth considering multiple influencing factors on the deterioration of durability for reinforced concrete structures, Advances in Materials Science and Engineering, 1-8.
- Kwon, S. (2016). Service Life Evaluation of RC Column Exposed to Carbonation Considering Time-dependent Crack Pattern, Journal of the Korean Recycled Construction Resources Institute, 4(1), 10-18. https://doi.org/10.14190/JRCR.2016.4.1.010
- Jung, H., Park, H., Kim, J., Kim, G., & Kong, J. (2013). Development of a probabilistic life-cycle cost model for marine structures exposed to chloride attack based on Bayesian approach using monitoring data, KSCE Journal of Civil Engineering, 17(5), 1073-1082. https://doi.org/10.1007/s12205-013-0350-9
- Delnavaz, A., & Ramezanianpour, A. (2012). A.The assessment of carbonation effect on chloride diffusion in concrete based on artificial neural network model, Magazine of Concrete Research, 64(10), 877-884 https://doi.org/10.1680/macr.11.00059
- Alipour, A., Shafei, B., & Shinozuka, M. (2011). Capacity loss evaluation of reinforced concrete bridges located in extreme chloride-laden environments, Structure and Infrastructure Engineering, 9(1), 8-27
- Jung, H. (2010). Durability Analysis and Development of Probability-Based Carbonation Prediction Model in Concrete Structure, Journal Of The Korean Society Of Civil Engineers A, 30(4A), 343-352
- Total Information Service Corporation. (2010). TOTAL -LCC, Technical Manual, ver.1.1, 2nd ed., Total Information Service Corporation, 24-28
- Yang, J., Yoon, S., Cho, H., Song, H., & Lee, H. (2010). A Study on The Factors which Influence on Evaluating Service Life for Carbonation of RC Structures, Journal of the KIEAE, 10(3), 103-110
- Jung, H., Park, H., Kong, J., Zi, G., & Kim, G. (2009). Development of a Successive LCC Model for Marine RC Structures Exposed to Chloride Attack on the Basis of Bayesian Approach, Journal of the Korea Concrete Institute, 21(3), 359-366. https://doi.org/10.4334/JKCI.2009.21.3.359
- Chiu, C., Kanematsu, M., Noguchi, T., & Nagai, H. (2008). Optimal maintenance plan of RC building damaged by concrete carbonation using immune algorithm, Journal of Structural and Construction Engineering, 73(624), 173-180. https://doi.org/10.3130/aijs.73.173
- Lee, S., Park, W., Lee, H., Kyung, J., & Byun, Y. (2007). A Study of FEM Analysis to Evaluate Restrain-Performance of Surface-Finishes for Carbonation, Journal Of The Architectural Institute Of Korea Structure & Construction, 23(9), 151-158.
- Lee, C., Kim, Y., & Kim, Y. (2007). A suggestion of carbonation-prediction equations of viaducts and structures covered creek for road vehicle in seoul metropolitan, Korea Concrete Institute, 19(1), 649-652.
- Peng, J., Shao, X., & Jin, X. (2006). Proceedings of the 3rd International Conference on Bridge Maintenance, Safety and Management - Bridge Maintenance, Safety, Management, Life-Cycle Performance and Cost, 821-822.
- Kwon, S., Song, H., & Byun, K. (2005). Durability design for cracked concrete structures exposed to carbonation using stochastic approach. Korean Society of Civil Engineers, 25(5), 741-750.
- Korean Standards. (2004). KS F 2596 Method for Measuring Carbonation Depth of Concrete. Korea Industrial Standards, Korean Standards & Certification Information Center, 1-7.
- Kim, M., Kwon, Y., Kang, S., & Kim, G. (2001). A study on the investigation of carbonation velocity and remaining life by actual condition for reinforced concrete apartments in korea, Architectural Institute of Korea, 7(1), 45-50.