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1 
Ahn, S. K. (1993). "Study on material development test for reducing rebound of shotcrete." Magazine of the Korean Concrete Institute, KCI, Vol. 5, No. 1, pp. 54-61 (in Korean).
2 
Gyungbu High Speed Railroad (2001a). NATM tunnel construction and measurement, pp. 3-14 (in Korean).
3 
Gyungbu High Speed Railroad (2001b). NATM Tunnel Construction and Measurement Specification, pp. 43-54 (in Korean).
4 
Jeon, J. T., Park, H. T. and Lee, Y. K. (2012). "Experimental study on reduce amounts of rebound in wet process shotcrete works by accelerator contents." Journal of the Korea Society of Civil Engineers, Vol. 32, No. 6D, pp. 615-622 (in Korean).DOI
5 
Korea Concrete Institute (2009). Standard Specification of Concrete, p. 429 (in Korean).
6 
Korea Water Resources Corporation (1993). Design and construction of shotcrete. NATM Technical (in Korean).
7 
Kwon, I. H. (2000). Revised NATM Tunneling Method. One technology, pp. 169-175.
8 
Lee, Y. K., Jeon, J. T. and Kim, J. Y. (2004). "A study on the strength test of dry and wet shotcrete in NATM tunnel." Journal of the Korean Society of Civil Engineers, Vol. 24, No. 2D, pp. 239-245 (in Korean).
9 
Ministry of Land, Transport and Maritime Affairs (2014). Tunnel Standard Specification (in Korean).
10 
Seoul Subway Corporation (1983). NATM Technical Performance Report for Subway Lines 3 and 4 (in Korean).