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2019 Vol.18, Issue 4 Preview Page

Research Article

30 December 2019. pp. 167-180
Abstract
References
1
Choi, Y. K., Lee, W. J., Lee, C. U. and Kwon, O. K. (2019), “Study(I) on Development of Charts and Formulae Predicting Allowable Axial Bearing Capacity for Prebored PHC Pile Socketed into Weathered Rock through Sandy Soil Layer”, Journal of The Korean Geotechnical Society, Vol.35, No.8, pp.17-30.
2
Hansen, B. (1957), “Earth Pressure Calculation”, Danish Technical Press, Copenhagen, Denmark.
3
Hong, S. T., Lee, J. I., Shin, Y. W. and Lee, S. H. (2011), “A Study on Skin Friction Estimation of Drilled Shaft Socketed in Weathered Granite by IGM's Theory”, Journal of Korean Society of Civil Engineering, Vol.31, No.6, pp.241-250.
4
Hsiung, Y. M. (2003), “Theoretical Elastic-Plastic Solution for Laterally Loaded Piles”, Journal of Geotechnical and Geo-environmental Engineering, Vol.129, No.5, pp.475-480.
10.1061/(ASCE)1090-0241(2003)129:6(475)
5
Kim, D. H. (2013), Evaluation of Bearing Capacity of Drilled Shaft Socketed in Domestic Layers, Inje University, Master Thesis.
6
Kim, S. H., Lee, S. C., Lee, J. H. and Kim, M. H. (2001), “Study on The Behavior of Opened Steel Pipe Pile End-beared at Lower Transported Soil Layer”, 仁濟論叢, Vol.16, No.1, pp.641-679.
7
Kim, S. I., Jeong, S. S. and Jung, S. Y. (1994), “A Simplified Method for the Calculation of Skin Friction on Piles in Soft Clay”, Journal of Korean Society of Civil Engineering, Vol.14, No.1, pp.171-178.
8
Kwon, O. K. (2015), “Bearing Behavior Characteristics of Pressure Penetrating Steel Pipe Pile Under Compression Load”, Journal of Korean Geo-Environmental Society, Vol.16, No.7, pp.5-13.
10.14481/jkges.2015.16.7.5
9
Lee, J. H. (2018), Analysis of Influence Factors on The Bearing Capacity of Drilled Shafts in Cohesionless Soil, Chungang University, Master Thesis.
10
Lee, J. S., Jang, Y. C. and Kim, Y. K. (2002), “ A Study on the Allowable Bearing Capacity of Pile by Driving Formulas”, Journal of Korean Navigation and Port Research, Vol.26, No.1, pp.106-111.
10.5394/KINPR.2002.26.1.106
11
Na, Y. S. and Lee, S. D. (2019), “Experimental Study on the End Bearing Capacity of the Pile in a Group Pile”, Journal of The Korean Geotechnical Society, Vol.35, No.6, pp.27-38.
12
Lee, S. J. (2013), “Analysis of Diameter Effects on Skin Friction of Drilled Shaft in Sand”, Journal of The Korean Geotechnical Society, Vol.29, No.1, pp.161-170.
10.7843/kgs.2013.29.1.161
13
Osterberg, J. O. (1998), “The Osterberg Load Test Method for Bored and Driven Piles The First Ten Years”, Proceedings of the 7th International Conference on Piling and Deep Foundations, Vienna, Vol.1, No.28, pp.1-11.
14
Paik, J. Y., Cho, J. Y., Jeong, S. S. and Hwang, T. J. (2012), “Shaft Group Efficiency of Friction Pile Groups in Deeps Soft Clay”, Journal of Korean Society of Civil Engineering, Vol.32, No.2, pp.49-60.
15
Park, J. B. (2017), “A Comparative Study on the Bearing Capacity of Dynamic Load Test and Static Load Test of PHC Bored Pile”, Journal of Korean Geo-Environmental Society, Vol.18, No.9, pp.19-31.
16
Park, J. S., Park, D. H., Jee, S. H. and Kim, D. J. (2015), “Evaluation of Vertical Bearing Capacity for Bucket and Shallow Foundations Installed in Sand”, Journal of Korean Geo-Environmental Society, Vol.16, No.9, pp.33-41.
10.14481/jkges.2015.16.9.33
17
Park, M. C., Kwon, O. K., Kim, C. M., Yun, D. K. and Choi, Y. G. (2019), “Study(V) on Development of Charts and Equations Predicting Allowable Compressive Bearing Capacity for Prebored PHC Piles Socketed into Weathered Rock through Sandy Soil Layers - Analysis of Results and Data by Parametric Numerical Analysis”, Journal of The Korean Geotechnical Society, Vol.35, No.10, pp.47-66.
18
Reese, L. C. (1978), “Analysis of Laterally Loaded Pile in Sand”, Proceedings of The VI Annual Offshore Technology Conference, Houston, Texas, (OTC 2080), pp.473-485.
19
Reese, L. C., Cox, W. R. and Koop, F. D. (1975), “Field Testing and Analysis of Laterally Loaded Pile in Stiff Clay”, Proceedings of The VII Annual Offshore Technology Conference, Houston, Texas, (OTC 2312), pp.672-690.
10.4043/2312-MS
20
Sagong, M, and Paik, K. H. (2004), “Side Resistance of Rock Socketed Drilled Shafts in Consideration of the Shaft Size Effects”, Journal of The Korean Geotechnical Society, Vol.20, No.9, pp.106-115.
21
Seo, Y. J. (2015), Characteristic of Side Resistance through Bi-directional Pile Load Test in Domestic and Foreign Sites, Inje University, Master Thesis.
22
Song, M. J., Park, Y. H. and Kim, M. M. (2013), “Skin Friction and End Bearing Resistances of Rock-socketed Piles Observed in Bi-directional Pile Load Tests”, Journal of The Korean Geotechnical Society, Vol.29, No.7, pp.17-36.
10.7843/kgs.2013.29.7.17
23
Yea, G. G., Yun, D. H., Yun, D. K. and Choi, Y. G. (2019), “Study(II) on Development of Charts and Formulae Predicting Allowable Axial Bearing Capacity for Prebored PHC Pile Socketed into Weathered Rock through Sandy Soil Layer - Improvement Measures of Current Design Method by Analyzing Current Design Data for Prebored PHC Piles”, Journal of The Korean Geotechnical Society, Vol.35, No.8, pp.31-42.
24
Yoon, M. S., Lee, C. K. and Kim, M. H. (2013), “Evaluation of Unit Side Resistance of Drilled Shafts by Revised SPT N Value”, Journal of The Korean Geotechnical Society, Vol.29, No.12, pp.5-10.
10.7843/kgs.2013.29.12.5
25
Yoon, S. H., Joo, Y. Y., Kim, D. I. and Kim, M. H. (2002), “A Study on the Comparison and Evaluation of Bearing Capacity for the Open-ended Steel Pipe Pile”, 仁濟論叢, Vol.17, No.1, pp.597-616.
Information
  • Publisher :Korean Geosythetics Society
  • Publisher(Ko) :한국지반신소재학회
  • Journal Title :Journal of the Korean Geosynthetics Society
  • Journal Title(Ko) :한국지반신소재학회 논문집
  • Volume : 18
  • No :4
  • Pages :167-180
  • Received Date : 2019-10-29
  • Revised Date : 2019-12-04
  • Accepted Date : 2019-12-06