References
- Chowdhury, S.S., Deb, K. and Sengupta, A. (2013), "Estimation of design parameters for braced excavation: Numerical study", J. Geomech., 13(3), 234-247. https://doi.org/10.1061/(ASCE)GM.1943-5622.0000207
- Civil Engineering and Textile Society (2010), Reinforced Soil Method, CIR Publishing, 98.
- Dang, H.P., Lin, H.D., Kung, J.H.S. and Wang, C.C. (2012), "Deformation behavior analyses of braced excavation considering adjacent structure by user-defined soil model", J. GeoEng., 7(1), 13-20.
- Dong, Y.P., Burd, H.J. and Houlsby, G.T. (2016), "Finite-element analysis of a deep excavation case history", Geotechnique, 66(1), 1-15. https://doi.org/10.1680/jgeot.14.P.234
- Dong Y. (2014), "Advanced finite element analysis of deep excavation case histories", Ph.D. Dissertation, University of Oxford, Oxford, U.K.
- Ghasemi, S.H. and Nowak, A.S. (2017a), "Reliability index for non-normal distributions of limit state functions", Struct. Eng. Mech., 62(3), 365-372. https://doi.org/10.12989/sem.2017.62.3.365
- Ghasemi, S.H. and Nowak, A.S. (2017b), "Target reliability for bridges with consideration of ultimate limit state", Eng. Struct., 152, 226-237 https://doi.org/10.1016/j.engstruct.2017.09.012
- Huang, X., Huang, H. and Zhang, D. (2012), "Centrifuge modelling of deep excavation over existing tunnel", Proc. Inst. Civ. Eng. Geotech. Eng., 167(1), 3-18. https://doi.org/10.1680/geng.11.00045
- Kim, N.K., Park, J.S., Han, M.Y., Kim, M.Y. and Kim, S.B. (2004), "Development of innovative prestressed support earth retention system", J. Kor. Geotech. Soc., 20(2), 107-113.
- Kim, M.Y., Lee, J.S., Han, M.Y., Kim, S.B. and Kim, N.K. (2005a), "A multi-noded cable element considering sliding effects", J. Kor. Soc. Steel Construct., 17(4), 449-457
- Kim, N.K., Park, J.S., Jang, H.J., Han, M.Y., Kim, M.Y. and Kim, S.B. (2005b), "Performance of innovative prestressed support earth retention system in urban excavation", J. Kor. Geotech. Soc., 21(2), 27-36.
- Kim, N.K., Park, J.S., Oh, H.J., Han, M.Y., Kim, M.Y. and Kim, S.B. (2007), "Performance of IPS earth retention system in soft clay", J. Kor. Geotech. Soc., 23(3), 5-13.
- Korea Geosynthetics Society (2010), Practice of Reinforced Soil Method, CIR Publishing, 98.
- Kung, G.T.C. (2010), Finite Element Analysis of Wall Deflection And Ground Movements Caused by Braced Excavations, in Finite Element Analysis, InTech.
- Lee, F.H., Yong, K.Y., Quan, K.C.N. and Chee, K.T. (1998), "Effect of corners in strutted excavations: Field monitoring and case histories", J. Geotech. Geoenviron. Eng., 124(4), 339-349. https://doi.org/10.1061/(ASCE)1090-0241(1998)124:4(339)
- Leung, R.K., Li, E.S. and Leung, C.L. (2009), "A case study: Design and construction of foundation and braced excavation at a reclaimed site at waterfront", Proceedings of the State-of-theart Technology and Experience on Geotechnical Engineering in Malaysia and Hong Kong, Hong Kong, August.
- Li, D., Li, Z. and Tang, D. (2015), "Three-dimensional effects on deformation of deep excavations", Proc. Inst. Civ. Eng. Geotech. Eng., 168(6), 551-562. https://doi.org/10.1680/jgeen.15.00042
- Long, M. (2001), "Data for retaining wall and ground movements due to deep excavations", J. Geotech. Geoenviron. Eng., 127(3), 203-224. https://doi.org/10.1061/(ASCE)1090-0241(2001)127:3(203)
- Nowak, A.S. and Collins, K.R. (2013), Reliability of Structure, CRC Press, New York, U.S.A.
- Onishi, K. and Sugawara, T. (1999), "Behavior of an earth retaining wall during deep excavation in Shanghai soft ground", Soils Found., 39(3), 89-97. https://doi.org/10.3208/sandf.39.3_89
- Osman, A. and Bolton, M. (2007), Back Analysis of Three Case Histories of Braced Excavations in Boston Blue Clay Using MSD Method, in Soft Soil Engineering, Taylor & Francis, 755-764.
- Osman, A.S. and Bolton, M.D. (2006), "Ground movement predictions for braced excavations undrained clay", J. Geotech. Geoenviron. Eng., 132(4), 465-477. https://doi.org/10.1061/(ASCE)1090-0241(2006)132:4(465)
- Ou, C.Y., Liao, J.T. and Cheng, W.L. (2000), "Building response and ground movements induced by a deep excavation", Geotechnique, 50(3), 209-220. https://doi.org/10.1680/geot.2000.50.3.209
- Park, J.S., Joo, Y.S. and Kim, N.K. (2009), "New earth retention system with prestressed wale in urban excavation", J. Geotech. Geoenviron. Eng., 135(11), 1596-1604. https://doi.org/10.1061/(ASCE)GT.1943-5606.0000148
- Park, J.S., Kim, N.K., Han, M.Y. and Kim, J.W. (2004), "IPS earth retention system", Proceedings of the Korean Geotechnical Society Spring Conference, Seoul, Korea, March.
- Pickles, A.R., Lee, S.W. and Norcliffe, B.A.W. (2003), "Groundwater and ground movement around deep excavation", Proc. Inst. Civ. Eng. Geotech. Eng., 156(3), 147-158. https://doi.org/10.1680/geng.2003.156.3.147
- Usluogullari, O.F., Temugan, A., Duman, E.S. and Yegin, Y. (2015), "Three dimensional finite element analysis of a deep excavation: Case study in Istanbul Metro", Proceedings of the 16th European Conference on Soil Mechanics and Geotechnical Engineering, Edinburgh, U.K.
- Usmani, A., Ramana, G.V. and Sharma, K.G. (2010), "Analysis of braced excavation using hardening soil model", Proceedings of the Indian Geotechnical Conference, Mumbai, India, December.
- Xu, C., Xu, Y., Sun, H. and Chen, Q. (2013), "Characteristic of braced excavation under asymmetrical loads", Math. Prob. Eng., 1-13.
Cited by
- Allowable wall deflection of braced excavation adjacent to pile-supported buildings vol.26, pp.2, 2018, https://doi.org/10.12989/gae.2021.26.2.161