Normal and shear resistance of longitudinal contact surfaces of segmental tunnel linings
Tài liệu tham khảo
Ulusay, 2007, SM for laboratory determination of direct shear strength
Tang, 1988
Zhong, 2006, Effect of joint structure on joint stiffness for shield tunnel lining, Tunnel Undergr Space Technol, 21, 406
Morgan, 1961, A contribution to the analysis of stress in a circular tunnel, Géotechnique, 11, 37, 10.1680/geot.1961.11.1.37
Peck RB, Hendron AJ, Mohraz B. State of the art of soft ground tunneling. In: Proceedings of 1st rapid excavation and tunneling conference. Chicago: AIME; 1972. p. 259–85.
JSCE. The design and construction of underground structures. Tokyo: Japan Society of Civil Engineers; 1977.
Ranken RE, Ghaboussi J, Hendron AJ. Analysis of ground-liner interaction for tunnels. Report no. UMTA-IL-06-0043-78-3. Department of Civil Engineering, University of Illinois at Urbana-Champaign; 1978.
Einstein, 1979, Simplified analysis for tunnel support, J Geotech Eng Div ASCE, 105, 499, 10.1061/AJGEB6.0000786
Yuen, 1979
Ogawa, 1986
Liu, 1991, 152
Lee, 2001, The equivalence of a jointed shield-driven tunnel lining to a continuous ring structure, Can Geotech J, 38, 461, 10.1139/t00-107
Blom, 2002
El Naggar, 2008, A closed-form solution for composite tunnel linings in a homogenous infinite isotropic elastic medium, Can Geotech J, 45, 266, 10.1139/T07-055
Muir Wood, 1975, The circular tunnel in elastic ground, Geotechnique, 25, 115, 10.1680/geot.1975.25.1.115
Hefny, 2004, Numerical study on the behavior of jointed tunnel lining, J Inst Civ Eng, 44, 108
Hefny, 2006, An investigation into the behavior of jointed tunnel lining, Tunnel Undergr Space Technol, 21, 428, 10.1016/j.tust.2005.12.070
Mashimo, 2003, Evaluation of the load on shield tunnel lining in gravel, Tunnel Undergr Space Technol, 18, 233, 10.1016/S0886-7798(03)00032-4
Lee, 2001, An analytical solution for a jointed shield-driven tunnel lining, Int J Numer Anal Methods Geomech, 25, 365, 10.1002/nag.134
Koyama, 2003, Present status and technology of shield tunnelling method in Japan, Tunnel Undergr Space Technol, 18, 145, 10.1016/S0886-7798(03)00040-3
Teachavorasinskun, 2010, Influence of segmental joints on tunnel lining, Tunnel Undergr Space Technol, 25, 490, 10.1016/j.tust.2010.02.003
Arnau, 2011, Experimental and analytical study of the structural response of segmental tunnel linings based on an in situ loading test—Part 2: Numerical simulation, Tunnel Undergr Space Technol, 26, 778, 10.1016/j.tust.2011.04.005
Do, 2013, 2D numerical investigation of segmental tunnel lining behavior, Tunnel Undergr Space Technol, 37, 115, 10.1016/j.tust.2013.03.008
Mayer, 2007, Numerical modeling of cam-pocket coupling system for concrete lining, 57
Cavalaro, 2009
Molins, 2011, Experimental and analytical study of the structural response of segmental tunnel linings based on an in situ loading test–Part 1: Test configuration and execution, Tunnel Undergr Space Technol, 26, 764, 10.1016/j.tust.2011.05.002
Cavalaro, 2012, Packer behaviour under simple and coupled stresses, Tunnel Undergr Space Technol, 28, 159, 10.1016/j.tust.2011.10.008
Do, 2014, Three-dimensional numerical simulation for mechanized tunnelling in soft ground: the influence of the joint pattern, Acta Geotech, 9, 673, 10.1007/s11440-013-0279-7
Datwyler. Seals for tunnel construction—sealing profiles for modern tunneling methods; 2014. 〈www.datwyler.com〉.
Plizzari GA, Tiberti G. Steel fibers as reinforcement for precast tunnel segments. In: Proceedings of the ITA-AITES 2006 world tunnel congress and the 32nd ITA General Assembly. Seoul; 2006. p. 438–9.