과제정보
The results presented in this paper are part of the research projects (No. 51478349 & No. 41272293) sponsored by the National Natural Science Foundation of China. This financial support is greatly appreciated.
참고문헌
- Al-Naddaf, M., Han, J., Jawad, S., Abdulrasool, G. and Xu, C. (2017), "Investigation of stability of soil arching under surface loading using trapdoor model tests", Proceedings of the 19th International Conference on Soil Mechanics and Geotechnical Engineering, Korea, September.
- Al-Naddaf, M., Han, J., Xu, C., Jawad, S. and Abdulrasool, G. (2019b), "Experimental investigation of Soil Arching Mobilization and Degradation under localized surface loading", J. Geotech. Geoenviron. Eng., 145(12), 04019114. https://doi.org/10.1061/(ASCE)GT.1943-5606.0002190.
- Al-Naddaf, M., Han, J., Xu, C. and Rahmaninezhad, M.S. (2019a), "Effect of geofoam on vertical stress distribution on buried structures subjected to static and cyclic footing loads", J. Pipel. Syst. Eng. Pract., 10(1), 04018027. https://doi.org/10.1061/(ASCE)PS.1949-1204.0000355.
- Aqoub, K., Mohamed, M. and Sheehan, T. (2020), "Analysis of unreinforced and reinforced shallow piled embankments under cyclic loading", Geosynth. Int., 27(2), 182-199. https://doi.org/10.1680/jgein.19.00010.
- Balaban, E. and Onur, M.I. (2018), "Comparison of behaviour of basal reinforced piled embankment with two layer of reinforcement", Geomech. Eng., 16(3), 233-245. https://doi.org/10.12989/gae.2018.16.3.233.
- Bao, N., Wei, J., Chen, J.F. and Stephen, A. (2021), "Investigation of soil arching under cyclic loading using the discrete element method", Int. J. Geomech., 21, 04021117. https://doi.org/10.1061/(ASCE)GM.1943-5622.0002090.
- Bhandari, A. (2010), "Micromechanical analysis of geosyntheticsoil interaction under cyclic loading", Ph.D. Dissertation; the University of Kansas, KS, USA.
- Bhandari, A. and Han, J. (2018), "Two-dimensional physical modelling of soil displacements above trapdoors", Geotech. Res., 5(2), 68-80. https://doi.org/10.1680/jgere.18.00002.
- Bi, Z., Gong, Q., Guo, P. and Cheng, Q. (2020), "Experimental study of the evolution of soil arching effect under cyclic loading based on trapdoor test and particle image velocimetry", Can. Geotech. J., 57, 903-920. https://doi.org/10.1139/cgj-2019-0205.
- Biradar, J., Banerjee, S., Shankar, R., Ghosh, P., Mukherjee, S. and Fatahi, B. (2019), "Response of square anchor plates embedded in reinforced soft clay subjected to cyclic loading", Geomech. Eng., 17(2), 165-173. https://doi.org/10.12989/gae.2019.17.2.165.
- Chevalier, B., Combe, G. and Villard, P. (2012), "Experimental and discrete element modeling studies of the trapdoor problem: influence of the macro-mechanical frictional parameters", Acta Geotech., 7(1), 15-39. https://doi.org/10.1007/s11440-011-0152-5.
- Chevalier, B. and Otani, J. (2011), "Arching observation in threedimensional trapdoor problem with X-ray CT and Discrete Element Method", Soils Found., 51(3), 459-469. https://doi.org/10.3208/sandf.51.459.
- Eskisar, J., Otani, J. and Hironaka, J. (2012), "Visualization of soil arching on reinforced embankment with rigid piled foundation using X-ray CT", Geotext. Geomembranes, 32, 44-54. https://doi.org/10.1016/j.geotexmem.2011.12.002.
- Feng, S., Ai, S. and Chen, H. (2017), "Estimation of arching effect in geosynthetic-reinforced structures", Comput. Geotech., 87, 188-197. https://doi.org/10.1016/j.compgeo.2017.02.014.
- Giroud, J.P., Bonaparte, R., Beech, J.F. and Gross, B.A. (1990), "Design of soil layer-geosynthetic systems overlying voids", Geotext. Geomembranes, 9(1), 11-50. https://doi.org/10.1016/0266-1144(90)90004-V.
- Han, G., Gong, Q. and Zhou, S. (2015), "Soil arching in a piled embankment under dynamic load", Int. J. Geomech., 15(6), 04014094. https://doi.org/10.1061/(ASCE)GM.1943-5622.0000443.
- Han, J., Bhandari, A. and Wang, F. (2012), "DEM analysis of stresses and deformations of geogrid-reinforced embankments over piles", Int. J. Geomech., 12(4), 340-350. https://doi.org/10.1061/(ASCE)GM.1943-5622.0000050.
- Han, J., Wang, F., Al-Naddaf, M. and Xu, C. (2017). "Progressive development of two-dimensional soil arching with displacement", Int. J. Geomech., 17(12), 04017112. https://doi.org/10.1061/(ASCE)GM.1943-5622.0001025.
- Heitz, C., Luking, J. and Kempfert, H.G. (2008), "Geosynthetic reinforced and pile supported embankments under static and cyclic loading", Proceedings of EuroGeo4-fourth European Geosynthetics Conference, Edinburgh, UK.
- Huckert, A., Briancon, L., Villard, P. and Garcin, P. (2016), "Load transfer mechanisms in geotextile-reinforced embankments overlying voids: experimental and analytical approaches", Geotext. Geomembranes, 44(3), 442-456. https://doi.org/10.1016/j.geotexmem.2015.06.005.
- Iglesia, G.R., Einstein, H.H. and Whitman, R.V. (2014), "Investigation of soil arching with centrifuge tests", J. Geotech. Geoenviron. Eng., 140(2), 04013005. https://doi.org/10.1061/(ASCE)GT.1943-5606.0000998.
- Iglesia, G.R. (1991), "Trapdoor experiments on the centrifuge: A study of arching in geomaterials and similitude in geotechnical models", Ph.D. Dissertation, Massachusetts Institute of Technology, MA, USA.
- Jenck, O., Dias, D. and Kastner, R. (2005), "Soft ground improvement by vertical rigid piles two-dimensional physical modeling and comparison with current design methods", Soils Found., 45(6), 15-30. https://doi.org/10.3208/sandf.45.15.
- Jenck, O., Dias, D. and Kastner, R. (2007), "Two-dimensional physical and numerical modeling of a pile-supported earth platform over soft soil", J. Geotech. Geoenviron. Eng., 133(3), 295-305. https://10.1061/(ASCE)1090-0241(2007)133:3(295).
- Jesmani, M., Kamalzare, M. and Sarbandi, B.B. (2016), "Seismic response of geosynthetic reinforced retaining walls", Geomech. Eng., 10(5), 635-655. https://doi.org/10.12989/gae.2016.10.5.635.
- Kahyaoglu, M.R. and Sahin, M. (2021), "Model studies on polymer strip reinforced soil retaining walls", Geomech. Eng., 25(5), 357-371. https://doi.org/10.12989/gae.2021.25.5.357.
- Ladanyi, B. and Hoyaux, B. (1969), "A study of the trap-door problem in a granular mass", Can. Geotech. J., 6(1), 1-14. https://doi.org/10.1139/t69-001.
- Lai, H., Zheng, J., Cui, M. and Chu, J. (2020), "'Soil arching" for piled embankments: Insights from stress redistribution behaviour of DEM modelling", Acta Geotech., 15(8), 2117-2136. https://doi.org/10.1007/s11440-019-00902-x.
- Lai, H., Zheng, J., Zhang, J., Zhang, R. and Cui, L. (2014), "DEM analysis of "soil"-arching within geogrid-reinforced and unreinforced pile-supported embankments", Comput. Geotech., 61, 13-23. https://doi.org/10.1016/j.compgeo.2014.04.007.
- Liang, L., Xu, C., Chen, Q. and Chen, Q. (2020), "Experimental and theoretical investigations on evolution of soil-arching effect in 2D trapdoor problem", Int. J. Geomech., 20(6), 06020007. https://doi.org/10.1061/(ASCE)GM.1943-5622.0001643.
- Liu, H.B., Yang, G.Q., Wang, H. and Xiong B.L. (2017), "A large-scale test of reinforced soil railway embankment with soilbag facing under dynamic loading", Geomech. Eng., 12(4), 579-593. https://doi.org/10.12989/gae.2017.12.4.579.
- McNulty, J.W. (1965), "An experimental study of arching in sand", Ph.D. Dissertation, Department of civil engineering, University of Illinois, USA.
- Mittal, S. and Meyase, K. (2012), "Study for improvement of grounds subjected to cyclic loads", Geomech. Eng., 4(3), 191-208. https://doi.org/10.12989/gae.2012.4.3.191.
- Moradi, G. and Abbasnejad, A. (2015), "Experimental and numerical investigation of arching effect in sand using modified Mohr Coulomb", Geomech. Eng., 8(6), 829-844. https://doi.org/10.12989/gae.2015.8.6.829.
- Nguyen, T. and Tran, L.V. (2021), "Arching effect in sand piles under base deflection using geometrically non-linear isogeometric analysis", Geomech. Eng., 26(4), 369-384. https://doi.org/10.12989/gae.2021.26.4.369.
- Rebello, N.E., Shivashankar, R. and Sastry, V.R. (2018), "Surface displacements due to tunneling in granular soils in presence and absence of geosynthetic layer under footings", Geomech. Eng., 15(2), 739-744. https://doi.org/10.12989/gae.2018.15.2.739.
- Rui, R., Han, J., van Eekelen, S.J.M. and Wan, Y. (2019), "Experimental investigation of soil-arching development in unreinforced and geosynthetic-reinforced pile-supported embankments", J. Geotech. Geoenviron. Eng., 145(1), 04018103. https://doi.org/10.1061/(ASCE)GT.1943-5606.0002000.
- Rui, R., Han, J., Ye, Y., Chen, C. and Zhai, Y. (2020), "Load transfer mechanisms of granular cushion between column foundation and rigid raft", Int. J. Geomech., 20(1), 04019139. https://doi.org/10.1061/(ASCE)GM.1943-5622.0001539.
- Rui, R., van Tol, A., Xia, X., van Eekelen, S., Hu, G. and Xia, Y. (2016b), "Evolution of soil arching: 2D DEM simulations", Comput. Geotech., 73, 199-209. https://doi.org/10.1016/j.compgeo.2015.12.006.
- Rui, R., van Tol, A.F., Xia, Y.Y., van Eekelen, S.J.M. and Hu, G. (2016a), "Investigation of soil-arching development in dense sand by 2D model tests", Geotech. Test. J., 39(3), 1-16. https://10.1520/GTJ20150130.
- Shen, P., Xu, C. and Han, J. (2020), "Centrifuge tests to investigate global performance of geosynthetic-reinforced pilesupported embankments with side slopes", Geotext. Geomembranes, 48(1), 120-127. https://doi.org/10.1016/j.geotexmem.2019.103527.
- Terzaghi, K. (1936), "Stress distribution in dry and in saturated sand above a yielding trap-door", Proceedings of the 1st International Conference on Soil Mechanics and Foundation Engineering, Cambridge.
- Terzaghi, K. (1943), Theoretical Soil Mechanics, John Wiley and Sons, Inc. New York, NY, USA.
- van Eekelen, S.J.M,. Bezuijen, A., Lodder, H.J. and van Tol, A.F. (2012), "Model experiments on piled embankments. Part I", Geotext. Geomembranes, 32, 69-81. https://doi.org/10.1016/j.geotexmem.2011.11.002.
- Wang, F., Han, J., Miao, L.C. and Bhandari, A. (2009), "Numerical analysis of geosynthetic-bridged and drilled shaft-supported embankments over large sinkhole", Geosynth. Int., 16(6), 408-419. https://doi.org/10.1680/gein.2009.16.6.408.
- Wang, H.L. and Chen, R.P. (2019), "Estimating static and dynamic stresses in geosynthetic-reinforced pile-supported track-bed undertrain moving loads", J. Geotech. Geoenviron. Eng., 145(7), 04019029. https://doi.org/10.1061/(ASCE)GT.1943-5606.0002056.
- White, D.J., Take, W.A. and Bolton, M.D. (2003), "Soil deformation measurement using particle image velocimetry (PIV) and photogrammetry", Geotechnique, 53(7), 619-631. https://doi.org/10.1680/geot.2003.53.7.619.
- Won, M.S., Lee, O.H. and Kim, Y.S. (2016), "A 12-year longterm study on the external deformation behavior of Geosynthetic Reinforced Soil (GRS) walls", Geomech. Eng., 10(5), 565-575. https://doi.org/ 10.12989/gae.2016.10.5.565.
- Xu, C., Luo, M., Shen, P., Han, J. and Ren, F. (2020), "Seismic performance of a whole Geosynthetic Reinforced Soil - Integrated Bridge System (GRS-IBS) in shaking table test", Geotext. Geomembranes, 48(3), 315-330. https://doi.org/10.1016/j.geotexmem.2019.12.004.
- Xu, C., Song, S. and Han, J. (2016), "Scaled model tests on influence factors of full geosynthetic-reinforced pile-supported embankments", Geosynth. Int., 23(2), 140-153. https://doi.org/10.1680/jgein.15.00038.
- Xu, C., Zhang, X., Han, J. and Yang, Y. (2019), "Twodimensional soil-arching behavior under static and cyclic loading", Int. J. Geomech., 19(8), 04019091. https://doi.org/10.1061/(ASCE)GM.1943-5622.0001482.
- Zhang, Z., Tao, F., Han, J., Ye, G., Cheng, B. and Liu, L. (2021a), "Influence of surface footing loading on soil arching above multiple buried structures in transparent sand", Can. J. Civ. Eng., 48, 124-133. https://doi.org/10.1139/cjce-2019-0352.
- Zhang, Z., Tao, F.J., Han, J., Ye, G.B. and Cheng, B.N. (2021b), "Arching development in transparent soil during multiple trapdoor movement and surface footing loading", Int. J. Geomech., 21(3), 04020262. https://doi.org/10.1061/(ASCE)GM.1943-5622.0001908.
- Zhao, Y., Gong, Q., Wu, Y., Zornberg, J.G., Tian, Z. and Zhang, X. (2021), "Evolution of active arching in granular materials: Insights from load, displacement, strain, and particle flow", Powder Technol., 384, 160-175. https://doi.org/10.1016/j.powtec.2021.02.011.