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1 
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2 
Choi, H. B. and Won, Y, H. (2010). "Comparative study on the characteristics of ground vibrations produced from borehole blast tests using electronic and electric detonators." J. of Korean Society of Explosives & Blasting Engineering, Vol. 28, No. 2, pp. 37-49 (in Korean).
3 
Choi, H. B., Ryu, C. H. and Jeong, J. H. (2010). "Consideration on limitations of square and cube root scaled distances in controled blast design." J. of Korean Society of Explosives & Blasting Engineering, Vol. 28, No. 1, pp. 27-39 (in Korean).
4 
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5 
Kim, S. H. and Lee, D. W. (2016). "Analysis of blasting vibration at the irregular layered structure ground." J. Korean Soc. Civ. Eng., Vol. 36, No. 5, pp.891-901 (in Korean).DOI
6 
Koh, G. W. (1997). Characteristics of the groundwater and hydrogeology implications of the Seogwipo formation in Cheju island, Ph.D. Dissertation, Pusan National University, Pusan, Korea, pp. 39-61 (in Korean).
7 
Ministry of Construction Transportation (MOCT) (2006). Blasting design and construction guidelines to road construction, No. 11-1500000-001841-01 (in Korean).
8 
Ministry of Environment (ME) (2010). A study on the correlation analysis between vibration level and vibration velocity, pp. 6-9 (in Korean).
9 
Ryu, B. H. (2014). Influence of delay time and priming location on the blast-induced ground vibration, Ph.D. Dissertation, Chosun University, Korea, pp. 6-30 (in Korean).
10 
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11 
Son, M. R., Ryu, J. H., Ahn, S. S., Hwang, Y. C., Moon, D. H., Park, D. H. and Moon, D. H. (2015). "Analysis on the characteristics of rock blasting-induced vibration based on the analysis of test blasting measurement data." J. of the Korean Geo-Environmental Society, Vol. 16, No. 9, pp. 23-32 (in Korean).DOI
12 
Yang, H. S., Kim, N. S., Jang, H. D., Kim, W. B., Ko, Y. H., Kim, S. J., Kim, J. G. and Moon, H. S. (2011). "Study on optimization of blast design for improving fragmentation in Jeju basalt rock area." J. of Korean Society of Explosives & Blasting Engineering, Vol. 29, No. 2, pp. 89-99 (in Korean).