참고문헌
- Alkaya, D. and Yesil, B. (2011), "Evaluation of a collapsed anchored bored pile retaining system by using finite elements method", Int. J. Phys. Sci., 6(1), 71-82.
- Ashour, A. and Hamed, A. (2012), "p-y curve and lateral response of piles in fully liquefied sands", Can. Geotech. J., 49(6), 633-650. https://doi.org/10.1139/t2012-019
- ASTM, A416 (1999), "Standard specification for steel strand, uncoated seven-wire for prestressed concrete", Am. Soc. Test. Mater., USA.
- Becker, D.E. and Moore, I.D. (2006), Canadian Foundation Engineering Manual, (4th Ed.), Cannadian Geotecnical Society, Canada.
- Brinkgrave, R.B., Broere, W. and Waterman, D. (2006), Plaxis 2D-version 8, Delft, The Netherlands.
- Galli, A. and Prisco, C. (2013), "Displacement-based design procedure for slope-stabilizing piles", Can. Geotech. J., 50(1), 41-53. https://doi.org/10.1139/cgj-2012-0104
- Gang, Z., Si, Y.P., Charles, W.W. and Yu, D. (2012), "Excavation effects on pile behaviour and capacity", Can. Geotech. J., 49(12), 1347-1356. https://doi.org/10.1139/t2012-095
- Gordon, A.F. and Mehrangiz, N. (2011), "Geotechnical resistance factors for ultimate limit state design of deep foundations in frictional soils", Can. Geotech. J., 48(11), 1742-1756. https://doi.org/10.1139/t11-068
- Guo, B.L., Rebecca, J.J., Charles, W.W.Ng. and Hong, Y. (2011), "Deformation characteristics of a 38 m deep excavation in soft clay", Can. Geotech. J., 48(12), 1817-1828. https://doi.org/10.1139/t11-075
- Jue, W., Ding, Z. and Weiqing, L. (2014), "Horizontal impedance of pile groups considering shear behavior of multilayered soils", Soil. Found., 54(5), 927-937. https://doi.org/10.1016/j.sandf.2014.09.001
- Kanagasabai, S., Smethurst, J.A. and Powrie, W. (2011), "Three-dimensional numerical modelling of discrete piles used to stabilize landslides", Can. Geotech. J., 48(9), 1393-1411. https://doi.org/10.1139/t11-046
- Kee, K.T., Zongrui, C., Chun F.L. and Yean K.C. (2014), "Pullout behavior of plate anchor in clay with linearly increasing strength", Can. Geotech. J., 51(1), 92-102. https://doi.org/10.1139/cgj-2013-0140
- Koichi, I., Makoto, K. and Satoru, O. (2014), "Design approach to a method for reinforcing existing caisson foundations using steel pipe sheet piles", Soil. Found., 54(2), 141-154. https://doi.org/10.1016/j.sandf.2014.02.006
- Lam, S.Y., Haigh, S.K. and Bolton, M.D. (2014), "Understanding ground deformation mechanisms for multi propped excavation in soft clay", Soil. Found., 54(3), 296-312. https://doi.org/10.1016/j.sandf.2014.04.005
- Loukidis, D. and Salgado, R. (2012), "Active pressure on gravity walls supporting purely frictional soils", Can. Geotech. J., 49(1), 78-97. https://doi.org/10.1139/t11-087
- Malek, A. and Alain, H. (2013), "Numerical evaluation of effects of nonlinear lateral pile vibrations on nonlinear axial response of pile shaft", Soil. Found., 53(3), 395-407. https://doi.org/10.1016/j.sandf.2013.04.002
- Maosong, H., Chenrong, Z., Linlong, M. and Weiming, G. (2011), "Analysis of anchor foundation with root caissons loaded in nonhomogeneous soils", Can. Geotech. J., 48(2), 234-246. https://doi.org/10.1139/T10-046
- Mehrangiz, N. and Gordon, A.F. (2011), "Geotechnical resistance factors for ultimate limit state design of deep foundations in cohesive soils", Can. Geotech. J., 48(11), 1729-1741. https://doi.org/10.1139/t11-066
- Merifield, R.S. and Sloan, S.W. (2006), "The ultimate pullout capacity of anchors in frictional soils'', Can. Geotech. J., 43(2), 852-868. https://doi.org/10.1139/t06-052
- Merifield, R.S., Lyamin, A.V. and Sloan, S.W. (2006), "Three-dimensional lower-bound solutions for the stability of plate anchors in sand", Geotechnique, 56(2), 123-132. https://doi.org/10.1680/geot.2006.56.2.123
- Sabatini, P.J., Pass, D.G. and Bachus, R.C. (1999), "Ground anchor and anchored system", Geotechnical Engineering Circular No. 4, Federal Highway Administration (FHWA), FHWA-IF-99-015.
- Sivakumar, V., O'Kelly, B.C., Madhav, M.R., Moorhead, C. and Rankin, B. (2013), "Granular anchors under vertical loading - axial pull", Can. Geotech. J., 50(2), 123-132. https://doi.org/10.1139/cgj-2012-0203
- Sofia, C.D., Arezou, M., Jaime, A.S. and Fernando, L. (2011), "Piles under cyclic axial loading: study of the friction fatigue and its importance in pile behaviour", Can. Geotech. J., 48(10), 1537-1550. https://doi.org/10.1139/t11-032
- Suched, L., Chanaton, S., Dariusz, W., Erwin, O. and Arumugam, B. (2013), "Finite element analysis of a deep excavation: A case study from the Bangkok MRT", Soil. Found., 53(5), 756-773. https://doi.org/10.1016/j.sandf.2013.08.013
- Szavits, N.A. (2008), "Advances and uncertainties in the design of anchored retaining walls using numerical modeling", Acta Geotechnica Slovenica, 5(1), 5-19.
- Terzaghi, K. and Peck, R.B. (1967), Soil Mechanics in Engineering Practice, (2nd Ed.), Wiley, New York, NY, USA.
- Tomlinson, M.J. (2001), Foundation Design and Construction, (7th Ed.), Prentice Hall, Harlow, England.
- Vishwas, N.K. and Jyant, K. (2011), "Effect of anchor width on pullout capacity of strip anchors in sand", Can. Geotech. J., 48(3), 511-517. https://doi.org/10.1139/T10-082
- Yong, T. and Mingwen, L. (2011), "Measured performance of a 26 m deep top-down excavation in downtown Shanghai", Can. Geotech. J., 48(5), 704-719. https://doi.org/10.1139/t10-100
피인용 문헌
- Realization and engineering application of hydraulic support optimization in residual coal remining vol.32, pp.3, 2017, https://doi.org/10.3233/JIFS-162311
- Model test and numerical simulation on the bearing mechanism of tunnel-type anchorage vol.12, pp.1, 2015, https://doi.org/10.12989/gae.2017.12.1.139
- Optimal pre-conditioning and support designs of floor heave in deep roadways vol.14, pp.5, 2015, https://doi.org/10.12989/gae.2018.14.5.429
- 2D and 3D numerical analysis on strut responses due to one-strut failure vol.15, pp.4, 2018, https://doi.org/10.12989/gae.2018.15.4.965
- The Impact of Extreme Groundwater Recharge and Dewatering Events on the Efficiency of a Deep Anchored Wall vol.56, pp.2, 2015, https://doi.org/10.1007/s11204-019-09577-8