Journal of Shanghai Jiao Tong University (Science) ›› 2018, Vol. 23 ›› Issue (6): 746-757.doi: 10.1007/s12204-018-1979-9
ZHU Yeting (朱叶艇), ZHANG Zixin (张子新), HUANG Xin (黄昕), ZHANG Guanjun (张冠军)
出版日期:
2018-12-01
发布日期:
2018-12-07
通讯作者:
ZHU Yeting (朱叶艇)
E-mail: 1210278theronzhu@tongji.edu.cn
ZHU Yeting (朱叶艇), ZHANG Zixin (张子新), HUANG Xin (黄昕), ZHANG Guanjun (张冠军)
Online:
2018-12-01
Published:
2018-12-07
Contact:
ZHU Yeting (朱叶艇)
E-mail: 1210278theronzhu@tongji.edu.cn
摘要: A series of full-scale loading tests are performed for a prospective subway tunnel with a rectangular shape including two reliability tests: one stagger-jointed three-ring reliability test, and one ultimate failure test on a single ring. Comprehensive measuring programs are designed to record the deformation of both lining structure and joints and the stresses of concrete, bolts and reinforcements. Experimental results show that in both the single-ring and three-ring loading cases, the long sides of tunnel cross section bend inwards while the short sides of tunnel cross section bend outwards. The inner part of joints opens while the outer part of joints closes at places experiencing positive moment and vice versa. Joint’s rotational stiffness varies at different locations. Concrete cracking and crushing are the chief damage modes, and they are closely related to the distribution of bending moment. Stagger-jointed fabrication significantly increases the overall rigidity of lining system, which thereby greatly reduces the deformation of both concrete lining and joints in comparison with the single-ring case. It is shown that the routinely-used uniform rigidity model is conservative and the preliminary design can be optimized by applying an effective rigidity ratio (ERR) of 0.5.
中图分类号:
ZHU Yeting (朱叶艇), ZHANG Zixin (张子新), HUANG Xin (黄昕), ZHANG Guanjun (张冠军). Prototype Loading Tests on Full-Ring Segmental Lining of Rectangular Shield Tunnel[J]. Journal of Shanghai Jiao Tong University (Science), 2018, 23(6): 746-757.
ZHU Yeting (朱叶艇), ZHANG Zixin (张子新), HUANG Xin (黄昕), ZHANG Guanjun (张冠军). Prototype Loading Tests on Full-Ring Segmental Lining of Rectangular Shield Tunnel[J]. Journal of Shanghai Jiao Tong University (Science), 2018, 23(6): 746-757.
[1] | KASHIMA Y, KONDO N, INOUE M. Development and application of the DPLEX shield method: Results of experiments using shield and segment models and application of the method in tunnel construction [J].Tunnelling and Underground Space Technology, 1996,11(1): 45-50. |
[2] | MORI K, ABE Y. Large rectangular cross-section tunneling by the multi-micro shield tunneling (MMST)method [J]. Tunnelling and Underground Space Technology,2005, 20(2): 129-141. |
[3] | NAKAMURA H, KUBOTA T, FURUKAWA M, et al. Unified construction of running track tunnel and crossover tunnel for subway by rectangular shape double track cross-section shield machine [J]. Tunnelling and Underground Space Technology, 2003, 18(2): 253-262. |
[4] | LIU X, BAI Y, YUAN Y, et al. Experimental investigation of the ultimate bearing capacity of continuously jointed segmental tunnel linings [J]. Structure and Infrastructure Engineering, 2016, 12(10): 1364-1379. |
[5] | WANG B, LIU Z H, LU L. A loading method of the test for lining whole wreath of Shanghai Chongming Tunnel [J]. Construction Technology, 2006, 35(sup):52-54 (in Chinese). |
[6] | LU L, LU X L, FAN P F. Full-ring experimental study of the lining structure of Shanghai Changjiang Tunnel[J]. Journal of Civil Engineering and Architecture,2011, 5(8): 732-739 (in Chinese). |
[7] | MOLINS C, ARNAU O. 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 [J]. Tunnelling and Underground Space Technology, 2006, 26(6): 764-777. |
[8] | NISHIKAWA K. Development of a prestressed and precast concrete segmental lining [J]. Tunnelling and Underground Space Technology, 2003, 18(2): 243-251. |
[9] | WANG Z,WANG L Z, LI L L, et al. Failure mechanism of tunnel lining joints and bolts with uneven longitudinal ground settlement [J]. Tunnelling and Underground Space Technology, 2014, 40: 300-308. |
[10] | Beijing Municipal Commission for City Planning and Land Resources Management. Code for design of metro: GB50157-2013 [S]. Beijing: China Architecture & Building Press, 2013. (in Chinese) |
[11] | LEE K M, GE X W. The equivalence of a jointed shield-driven tunnel lining to a continuous ring structure[J]. Canadian Geotechnical Journal, 2001, 38(3):461-483. |
[12] | YE F, GOU C F, SUN H D, et al. Model test study on effective ratio of segment transverse bending rigidity of shield tunnel [J]. Tunnelling and Underground Space Technology, 2014, 41: 193-205. |
[13] | PENG Y C, DING W Q, YAN Z G, et al. Analysis and calculation method of effective bending rigidity ratio in modified routine method [J]. Chinese Journal of Geotechnical Engineering, 2013, 35(sup1): 495-500(in Chinese). |
[14] | NIKKHAH M, MOUSAVI S S, ZARE S, et al. Evaluation of structural analysis of tunnel segmental lining using beamspring method and force-method (Case study: Chamshir water conveyance tunnel) [J]. Journal of Mining and Environment, 2017, 8(1): 111-130. |
[15] | ZHONG X C, ZHU W, HUANG Z R, et al. Effect of joint structure on joint stiffness for shield tunnel lining[J]. Tunnelling and Underground Space Technology,2006, 21(3/4): 407-408. |
[16] | TEACHAVORASINSKUN S, CHUB-UPPAKARN T.Influence of segmental joints on tunnel lining [J].Tunnelling and Underground Space Technology, 2010,25(4): 490-494. |
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