참고문헌
- Al Shaer, A., Duhamel, D., Sab, K., Foret, G., and Schmitt, L. (2008), "Experimental Settlement and Dynamic behavior of a Portion of Ballasted Railway Track under High Speed Trains", Journal of Sound and Vibration, Vol.316, No.1, pp.211-233. https://doi.org/10.1016/j.jsv.2008.02.055
- ASTM D6951 (2009), "Standard Test Method for Use of the Dynamic Cone Penetrometer in Shallow Pavement Applications", Annual Book of ASTM Standard 04.03, ASTM International, West Conshohocken, PA.
- ASTM E2583 (2015), "Standard Test Method for Measuring Deflections with a Light Weight Deflectometer (LWD)", Annual Book of ASTM Standard 04.03, ASTM International, West Conshohocken, PA.
- Byun, Y. H., Kim, J. H., and Lee, J. S. (2013), "Cone Penetrometer with a Helical-Type Outer Screw Rod for Evaluation of the Subgrade Condition", Journal of Transportation Engineering, 139, pp.115-122. https://doi.org/10.1061/(ASCE)TE.1943-5436.0000504
- Byun, Y. H. and Lee, J. S. (2013), "Instrumented Dynamic Cone Penetrometer Corrected with Transferred Energy into a Cone Tip: A Laboratory Study", Geotechnical Testing Journal, Vol.36, No.4, pp.533-542. https://doi.org/10.1520/GTJ20120115
- Chebli, H., Clouteau, D., and Schmitt, L. (2008), "Dynamic Response of High-speed Ballasted Railway Tracks: 3D Periodic Model and in Situ Measurements", Soil Dynamics and Earthquake Engineering, 28, pp.118-131. https://doi.org/10.1016/j.soildyn.2007.05.007
- Choi, C. Y., Lee J. W., Lim Y., and Cho, H. (2015), "Correction Factors for Modulus Calculation Equation used in Light Weight Deflectometer Considering Track Foundation", Journal of the Korean Society for Railway, Vol.18, No.1, pp.53-62. https://doi.org/10.7782/JKSR.2015.18.1.53
- Clark, M., McCann, D.M., and Forde, M.C. (2002), "Infrared Thermographic Investigation of Railway Track Ballast", NDT & E International, 35, pp.83-94. https://doi.org/10.1016/S0963-8695(01)00032-9
- DIN 18 134 (1993), "Plattendruckversuch", Deutsches Institut fur Normung e. V.
- Elhakim, A. F., Elbaz, K., and Amer, M. I. (2014), "The use of Light Weight Deflectometer for in Situ Evaluation of Sand Degree of Compaction", HBRC Journal, Vol.10, No.3, pp.298-307. https://doi.org/10.1016/j.hbrcj.2013.12.003
- Fleming, P., Frost, M., and Lambert, J. (2007), "Review of Lightweight Deflectometer for Routine in Situ Assessment of Pavement Material Stiffness", Transportation research record: journal of the Transportation Research Board, (2004), pp.80-87.
- Hong, W. T., Byun, Y. H., Kim, S. Y., and Lee, J. S. (2016), "Cone Penetrometer Incorporated with Dynamic Cone Penetration Method for Investigation of Track Substructures", Smart Structures and Systems, Vol.18, No.2, pp.197-216. https://doi.org/10.12989/sss.2016.18.2.197
- Hong, W. T., Kim, S. Y., Lee, S. J., and Lee, J. S. (2017), "Strength and Stiffness Assessment of Railway Track Substructures using Crosshole-type Dynamic Cone Penetrometer", Soil Dynamics and Earthquake Engineering, 100, pp.88-97. https://doi.org/10.1016/j.soildyn.2017.05.021
- Kodicherla, S. P. K. and Nandyala, D. K. (2016), "Use of CPT and DCP based Correlations in Characterization of Subgrade of a Highway in Southern Ethiopia Region", International Journal of Geo-Engineering, Vol.7, No.11, DOI 10.1186/s40703-016-0025-8.
- Korea Rail Network Authority (2015), "Design Specification for Railroad: Road Bed", Ministry of Land, Infrastructure, and Transport, Republic of Korea, 1043.
- KS F 2312 (2004), "Test Method for Soil Compaction using a Rammer", Korean Standard Association, 12.
- Lim, Y., Kim, D. S., Cho, H. J., and Sagong, M. (2013), "Investigation of Stiffness Characteristics of Subgrade Soils under Tracks Based on Stress and Strain Levels", Journal of the Korean Society for Railway, Vol.16, No.5, pp.386-393. https://doi.org/10.7782/JKSR.2013.16.5.386
- Mohammadi, S. D., Nikoudel, M. R., Rahimi, H., and Khamehchiyan, M. (2008), "Application of the Dynamic Cone Penetrometer (DCP) for Determination of the Engineering Parameters of Sandy Soils", Engineering Geology, Elsevier, Vol.101, No.3, pp.195-203. https://doi.org/10.1016/j.enggeo.2008.05.006
- Nazzal, M., Abu-Farsakh, M., Alshibli, K., and Mohammad, L. (2004), "Evaluating the Potential use of a Portable LFWD for Characterizing Pavement Layers and Subgrades", Geotechnical Engineering for Transportation Projects, pp.915-924.
- Robins, N., Clover, R., and Singh, C. (2009), "A Climate for Recovery: the Colour of Stimulus Goes Green", HSBC Global Research, 25, pp.1-45.
- Santamarina, J. C., Klein, K. A., and Fam, M. A. (2001), "Soils and Waves-Particulate Materials Behavior, Characterization and Process Monitoring", Jhon Wiley and Sons, NY, p.448.
- Selig, E.T. and Waters, J.M. (1994), "Track Geotechnology and Substructures Management", Thomas Telford, London, p.141.