Acknowledgement
이 논문은 2020년도 정부(산업통상자원부)의 재원으로 한국에너지기술평가원의 지원을 받아 수행된 연구임(No.20206510100030, 가동원전2,3등급 대구경 배관 보수기술 개발)
References
- Kim. S. H., Choi. H. S., Jeon. B. G. and Hahm. D. G., 2019, "Low-cycle Fatigue Behaviors of the Elbow in a Nuclear Power Plant Piping System Using the Moment and Deformation Angle," Eng. Fail. Anal., Vol. 96, pp. 348-361. doi:https://doi.org/10.1016/j.engfailanal.2018.10.0 21
- Kim. J. W. and Park. C. Y., 2002, "An Experimental Study on the Evaluation of Failure Behavior of Pipe with Local Wall Thinning," Proc. of ASME 2016 PVP Conference, Vancouver, BC, August 5-9, PVP2002-1258.
- Yamagata, T., Ito, A., Sato, Y. and Fujisawa, N., 2014, "Experimental and Numerical Studies on Mass Transfer Characteristics Behind an Orifice in a Circular Pipe for Application to Pipe-wall Thinning," Exp. Therm. Fluid Sci., Vol. 52, pp. 239-247. doi:https://doi.org/10.1016/j.expthermflusci.2013.09.017
- Peyvandi, A., Soroushian, P. and Jahangirnejad, S., 2013, "Enhancement of the Structural Efficiency and Performance of Concrete Pipes Through Fiber Reinforcement," Constr. Build Mater., Vol. 45, pp. 36-44. doi:https://doi.org/10.1016/j.conbuildmat.2013.03.084
- Fonseca, E.M.M., De Melo, F.J.M.Q. and Oliveira, C.A.M., 2005, "The Thermal and Mechanical Behaviour of Structural Steel Piping Systems" Int. J. Pres. Ves. Pip., Vol. 82, Issue 2, pp. 145-153. doi:https://doi.org/10.1016/j.ijpvp.2004.06.012
- Kim. J. S., Jang. J. H. and Kim. Y. J., 2022, "Efficient Elastic Stress Analysis Method for Piping System with Wall-thinning and Reinforcement", Nucl. Eng. Tech., Vol. 54, pp. 732-740. doi:https://doi.org/10.1016/j.net.2021.08.026
- Chin. W, S, and Lee. D. G., 2006, "Binary Mixture Rule for Predicting the Dielectric Properties of Unidirectional E-glass/epoxy Composite," Compos. Struct., Vol. 74, Issue 2, pp. 153-162. doi: https://doi.org/10.1016/j.compstruct.2005.04.008
- Peng, L. C. and Peng, T. L., 2009, Pipe stress engineering, ASME press, New York.
- ABAQUS Version 2019, 2019, Dassault Systems.