Abstract
References
1.Bono, N. A., Liu, T. K., and Soydemir, C. (1992), “Performance of an Internally Braced Slurry-diaphragm Wall for Excavation Support”, Slurry Walls: Design, Construction, and Quality Control, ASTM Special Topic Publication, Vol.1129, pp.347-360. 2.Brinkgrave, R. B., Broere, W., and Waterman, D. (2005), “PLAXIS 2D - Version 8”, PLAXIS B. V., Netherlands. 3.Clarke, B. G. and Wroth, C. P. (1984), “Analysis of Dunton Green Retaining Wall based on Results of Pressuremeter Tests”, Géotechnique, Vol.34, pp.549-561. 4.Clough, G. W. and O’Rourke, T. D. (1990), “Construction Induced Movements of in Situ Walls”, Proceedings of Design and Performance of Earth Retaining Structures, Vol.25, pp.439-470. 5.Finno, R. J., Blackburn, J. T., and Roboski, J. F. (2007), “Three- dimensional Effects for Supported Excavations in Clay”, Journal of Geotechnical and Geoenvironmental Engineering, Vol.133(1), pp.30-36. 6.Finno, R. J., Harahap, I. S., and Sabatini, P. J. (1991), “Analysis of Braced Excavations with Coupled Finite Element Formulations”, Computers and Geotechnics, Vol.12(2), pp.91-114. 7.Hashash, Y. M. and Whittle, A. J. (1996), “Ground Movement Prediction for Deep Excavations in Soft Clay”, Journal of Geotechnical Engineering, Vol.122(6), pp.474-486. 8.Hubbard, H. W., Potts, D. M., Miller, D., and Burland, J. B. (1984), “Design of the Retaining Walls for the M25 Cut and Cover Tunnel at Bell Common”, Géotechnique, Vol.34(4), pp.495-512. 9.Jang, C. S. (2002), Application of genetic algorithm to the back analysis of the underground excavation system, PhD thesis, Chung- Ang University, Korea. 10.Jeong, S. S. and Kim, Y. H. (2008), “Characteristics of Collapsed Retaining Walls Using Elasto-plastic Method and Finite Element Method”, Korean Geotechnical Society, Vol.25(4), pp.19-29. 11.Jeong, S. S., Kim, B. C., Won, J. O., and Lee, J. H. (2003), “Uncoupled Analysis of Stabilizing Piles in Weathered Slopes”, Computers and Geotechnics, Vol.30(8), pp.671-682. 12.Korea Rail Network Authority (2013), “Structural Design Report for Suseo High Speed Railway (in Korean language)”, Korea. 13.Korean Geotechnical Society (2015), “Korea Specification for Substructures (in Korean language)”, Korea. 14.Lee, S. and Kim, S. K. (2008), “A Study on Deformation Analysis of the Earth Retaining Wall”, Korean Geotechnical Society, Vol.24(2), pp.27-36. 15.Lee, F. H., Yong, K. Y., Quan, K. C., and Chee, K. T. (1998), “Effect of Corners in Strutted Excavations: Field Monitoring and Case Histories”, Journal of Geotechnical and Geoenvironmental Engineering, Vol.124(4), pp.339-349. 16.Ou, C. Y., Chiou, D. C., and Wu, T. S. (1996), “Three-dimensional Finite Element Analysis of Deep Excavations”, Journal of Geotechnical Engineering, Vol. 122(5), pp.337-345. 17.Potts, D. M. and Fourie, A. B. (1984), “The behaviour of a Propped Retaining Wall: Results of a Numerical Experiment”, Géotechnique, Vol.34(3), pp.383-404. 18.Powrie, W. and Li, E. S. F. (1991), “Finite Element Analyses of an in Situ Wall Propped at Formation Level”, Géotechnique, Vol.41(4), pp.499-514. 19.Shin, J. W. and Kim, D. S. (2004), “Comparison of Displacement of the Braced Retaining Wall by Developed Elasto-plastic Analysis”, Journal of the Korean Society of Safety, Vol.19(2), pp.112-118. 20.Simpson, B. (1992), “Retaining Structures: Displacement and Design”, Géotechnique, Vol.42(4), pp.541-576.
Information
- Publisher :The Korean Geotechnical Society
- Publisher(Ko) :한국지반공학회
- Journal Title :Journal of the Korean Geotechnical Society
- Journal Title(Ko) :한국지반공학회 논문집
- Volume : 32
- No :4
- Pages :29-39
- Received Date : 2016-02-01
- Revised Date : 2016-03-21
- Accepted Date : 2016-03-28
- DOI :https://doi.org/10.7843/kgs.2016.32.4.29


Journal of the Korean Geotechnical Society







