References
- Chun, B. S., Lee, J. Y., and Seo, D. D. (2003), The injection characteristics and environmental effects for grouting materials based on cement, Korean Geo-Environmental Society, Vol.19, No.2, pp.159-170.
- Jin, H. W., Ryu, B. H., and Lee, J. G. (2016), Development and assessment of laboratory testing apparatus on grouting injection performance, Korean Geo-Environmental Society, Vol.17, No.10, pp.23-31.
- Jung, M. H., Kim, Y. S., Jung, C. H., and Lee, S. (2010), Application of earth natural grouting using micro cement and inorganic material, Korea Institute for Structural Maintenance and Inspection, Vol.14, No.1, pp.106-116.
- Kong, J. Y., Kim, C. K., Park, J. H., and Chun, B. S. (2010), Grouting effects of microfine cement in the rock-based sites, Korean Geo-environmental Society, Vol.11, No.12, pp.37-45.
- Lee, C. H., Chang, S. H., Ahn, S. Y., and Shin, H. S. (2013), A preliminary study on economical efficiency of a room-and-pillar excavation method in comparison with 2-arch tunnelling method, Korean Tunnelling and Underground Space Association, Vol.15, No.6, pp.599-612. https://doi.org/10.9711/KTAJ.2013.15.6.599
- Lee, C. H., Hwang, J. D., Kim, E. H., and Chang, S. H. (2014), Consideration on design procedure of room-and-pillar underground structure part I:parametric study, Korean Tunnelling and Underground Space Association, Vol.16, No.5, pp.487-495. https://doi.org/10.9711/KTAJ.2014.16.5.487
- ASTM D2196 (2015), Standard test method for theological properties of non-newtonian materials by rotational viscometer, American Society for Testing Materials.
- ASTM D445 (2015), Standard test method for kinematic viscosity of transparent and opaque liquids (and caculation of dynamic viscosity), American Society for Testing Materials.
- ASTM D446 (2012), Standard specifications and operating instructions for glass capillary kinematic viscometers, American Society for Testing Materials.
- ASTM D6910 (2009), Standard test method for Marsh funnel viscosity of clay construction slurries, American Society for Testing Materials.
- Barton, N. (2004), The theory behind high pressure grouting - parts 1 and 2, Tunnels and Tunneling International, Vol.36, No. 9-10, pp.28-30, 33-35.
- Bear, J. (1972), Dynamics of fluids in porous media, Dover Publication Inc., New york, pp.33-38.
- Clayton, T. C., Donald, F. E., and John, A. R. (2005), Engineering fluid mechanics, John Wiley & Sons, Inc., New york, pp.16-22.
- Darling, P. (2011), Mining Engineering handbook, Society for Mining, Metallurgy and Exploration, INC.(SME), 3rd Edition.
- Donald, A. B. and Grouting Committee of the Geo-Institute (2005), Glossary of grouting terminology, Journal of Geotechnical and Geoenvironmental Engineering, Vol.31, Issue. 12, pp.1534-1542.
- Hartman, H. L. and Mutmansky, J. M. (2002), Introductory Mining Engineering 2nd edition, Wieley, New Jersey.
- KS A 0531 (2011), Viscosity of liquid-Methods of measurement, Korean Industrial Standards.
- KS L 1614 (2001), Determination of particle size distributions for fine ceramic raw powders by laser diffraction method, Korean Industrial Standards.
- KS L 5106 (2009), Testing method for fineness of porland cement by air permeability apparatus, Korean Industrial Standards.
- KS M ISO 2555 (2012), Plastics-Resins in the liquid state or as emulsions or dispersions-Determination of apparent viscosity by the Brookfield test method, Korean Industrial Standards.
- Mitchell, J. K. and Katti, R. K. (1981), Soil Improvement - State of the Art Report, 10th ICSMFE, Stockholm, Sweden, Vol.4, pp. 509-565.
- Mohammed, H. M., Pusch, R., and Knutsson, S. (2014), Study of cement-grout penetration into fractures under static and oscillatory conditions, Tunnelling and Underground Space Technology, Vol. 45, pp.10-19.
- Pitt, M. J. (2000), The Marsh funnel and drilling fluid viscosity: A new equation for field use, SPE Drilling & Completion, Vol.15, No.1, pp.3-6. https://doi.org/10.2118/62020-PA
- Witherspoon, P. A., Amick, C. H., Gale, J. E., and Iwai, K. (1979), Observations of a potential size-effect in experimental determination of the hydraulic properties of fractures, LBNL Paper LBL-8571, Water Resources Research, Vol.15, pp.1142-1146. https://doi.org/10.1029/WR015i005p01142