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International Journal of Architectural Heritage
Conservation, Analysis, and Restoration
Volume 16, 2022 - Issue 4
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Research Article

Research on Collapse Modes and Bearing Capacities of Ancient Chinese Stone Arch Bridges Built with Different Stone Arrangements

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Pages 553-576 | Received 03 Dec 2019, Accepted 17 Aug 2020, Published online: 08 Sep 2020

References

  • Behnamfar, F., and M. Afshari. 2013. Collapse analysis and strengthening of stone arch bridges against earthquake. International Journal of Architectural Heritage 7 (1):1–25. doi:https://doi.org/10.1080/15583058.2011.606594.
  • Blasi, C., and P. Foraboschi. 1994. Analytical approach to collapse mechanisms of circular masonry arch. Journal of Structural Engineering-ASCE 120 (8):2288–309. doi:https://doi.org/10.1061/(ASCE)0733-9445(1994)120:8(2288).
  • Caddemi, S., I. Caliò, F. Cannizzaro, D. D’Urso, and G. Occhipinti. 2019. 3D discrete macro-modelling approach for masonry arch bridges. IABSE 2018 towards a Resilient Built Environment Risk and Asset Management.
  • Cannizzaro, F., B. Pant`o, S. Caddemi, and I. Cali`o. 2018. A discrete macro-element method (DMEM) for the nonlinear structural assessment of masonry arches. Engineering Structures 168:243–56. doi:https://doi.org/10.1016/j.engstruct.2018.04.006.
  • Cavicchi, A., and L. Gambarotta. 2005. Collapse analysis of masonry bridges taking into account arch-fill interaction. Engineering Structures 27 (4):605–15. doi:https://doi.org/10.1016/j.engstruct.2004.12.002.
  • Chongqing Communication Technology Research and Design Institution. 2011. JTG D70-2004 code for design of road tunnel. [ In Chinese].
  • Chun, Q., Y. Xu, and J. Pan. 2012. Structure analysis and repair plan for the water gate relics of taizhou. Sciences of Conservation and Archaeology 24 (4):11–17. [ In Chinese].
  • Clemente, P., A. Occhiuzzi, and A. Raithel. 1995. Limit behavior of stone arch bridges. Journal of Structural Engineering-ASCE 121:1045–50. doi:https://doi.org/10.1061/(ASCE)0733-9445(1995)121:7(1045).
  • Forgács, T., V. Sarhosis, and K. Bagi. 2017. Minimum thickness of semi-circular skewed masonry arches. Engineering Structures 140:317–36. doi:https://doi.org/10.1016/j.engstruct.2017.02.036.
  • Gilbert, M., C. Casapulla, and H. M. Ahmed. 2006. Limit analysis of masonry block structures with non-associative frictional joints using linear programming. Computers & Structures 84 (13–14):873–87. doi:https://doi.org/10.1016/j.compstruc.2006.02.005.
  • Gong, X. 2007. Damage analysis of stone arch bridge and study on its maintenance and strengthening method. PhD thesis, Southwest Jiaotong University. [ In Chinese].
  • Guo, W., S. Yuan, and X. Li. 2006. A primary study on cultural resources protection and exploitation of ancient bridge in fuzhou municipality. Fujian Geography 21 (2):55–58. [ In Chinese].
  • Heyman, J. 1966. The stone skeleton. International Journal of Solids and Structures 2 (2):249–56. doi:https://doi.org/10.1016/0020-7683(66)90018-7.
  • Heyman, J. 1969. The safety of masonry arches. International Journal of Mechanical Sciences 11 (4):363–85. doi:https://doi.org/10.1016/0020-7403(69)90070-8.
  • Hu, C., L. Fan, and W. Zhou. 2005. Long span stone arch bridge upper arch structure association effect analysis and research. Journal of Highway and Transportation Research and Development 22 (1):105–07. [ In Chinese].
  • Le, Z. 2012. Research on heritage composition and protection of shaoxing ancient bridges. PhD thesis, Xi’ an University of Architecture and Technology. [ In Chinese].
  • Li, H., and X. Guo. 2009. Research on calculation methods of earth pressure on muti-arch tunnel for highway. Rock and Soil Mechanics 30 (11):3429–34. [ In Chinese].
  • Li, Y., and Y. Meng. 2007. Application of bonding steel plate to reinforcement of stone arch bridge. Journal of Chongqing Jiaotong University (Natural Science) 26 (Z1):22–24, 34. [ In Chinese].
  • Li, Z. 2015. An investigation into the ancient bridges’ present situation in hangzhou city proper. PhD thesis, Xi’an University of Architecture and Technology. [ In Chinese].
  • Liang, J., L. Hong, Y. Xiao, L. Yan, and Y. Liao. 2012. Experimental research of stress-strain relationship on brick and mortar. Proceedings of National Conference on Basic Theory and Engineering Application of Masonry Structure, China, Zhejiang, Ningbo. [ In Chinese].
  • Lin, X., Z. Xiang, and X. Wang. 2007. Telling the reinforcement technology of the stone arch bridge. ShanXi Architecture 33 (9):261–62. [ In Chinese].
  • Liu, D. 2015. The technique of the tiles and stones in Chinese ancient building. 2nd ed. Beijing, China: China Building Industry Press. [ In Chinese].
  • Liu, G. 2005. The research on the basic mechanical behavior of masonry structure. PhD thesis, Hunan University. [ In Chinese].
  • Liu, J. 2010. Investigation and research on the conservation of existing ancient bridges in jiangsu. Proceedings of the 3rd International Conference on Preservation and Research of Historic Bridges Province, China, Jiangsu, Nanjing. [ In Chinese].
  • Lu, X., X. Lu, J. Zhang, J. Song, and L. Ye. 2010. Progressive collapse simulation and components importance evaluation of a stone arch bridge. Journal of Lanzhou Jiaotong University 29 (6):25–30. [ In Chinese].
  • Luo, R. 2016. Experimental study of seismic performance of low strength masonry walls reinforced with one-side cement mortar splint. PhD thesis, China Academy of Building Research, Beijing. [ In Chinese].
  • Luo, Y. 1959. Chinese stone bridge. 2nd ed. Beijing, China: China Communications Press. [ In Chinese].
  • Mao, Y. 1979. The history of Chinese bridges. 1st ed. Shanghai, China: Shanghai Scientific and Technical Publishers. [ In Chinese].
  • Mao, Y. 1986. The technique history of Chinese ancient bridges. 1st ed. Beijing, China: Beijing Publishers. [ In Chinese].
  • Meng, Z. 2013. Investigation and research of historical bridges in pearl river delta. PhD thesis, Guangdong University of Technology. [ In Chinese].
  • Milani, G., and P. B. Lourenço. 2012. 3d non-linear behavior of masonry arch bridges. Computers & Structures 110–111 (2012):133–50. doi:https://doi.org/10.1016/j.compstruc.2012.07.008.
  • Ministry of Housing and Urban-Rural Development of the People’s Republic of China. 2011. GB50003-2011 code for design of masonry structures. [ In Chinese].
  • Nowak, R. 2019. Strengthening and Repair Methods for Brick Arched Balconies. Proceedings of 3rd World Multidisciplinary Civil Engineering, Architecture, Urban Planning Symposium (WMCAUS 2018), Czech Republic, Prague.
  • Page, J. 1987. Load tests to collapse on two arch bridges at Preston, Shropshire and Prestwood, Staffordshire. TRRL Research Report.
  • Page, J. 1993. Masonry arch bridges. TRL State of the Art Review.
  • Peng, W., R. Pan, and F. Dai. 2015. Theoretic framework and finite element implementation on progressive collapse simulation of masonry arch bridge. Mathematical Problems in Engineering 2015:1–12.
  • Rondeaux, J., and D. Zastavni. 2018. A fully graphical approach for limit state analysis of existing structures: Application to plane elastic-plastic bended structures and to plane masonry arches. International Journal of Architectural Heritage 12 (3):409–31. doi:https://doi.org/10.1080/15583058.2017.1323252.
  • Shi, C. 2014. Theory and design of masonry structure. 3rd ed. Beijing, China: China Building Industry Press. [ In Chinese].
  • Sun, H., and Y. Li. 2018. Reinforcement effect and analysis of an open-spandrel stone arch bridge in guilin. Industrial Construction 48 (3):203–07. [ In Chinese].
  • Tang, H. 2011. Ancient bridge of China. 1st ed. Beijing, China: China Building Industry Press. [ In Chinese].
  • Thavalingam, A., N. Bicanic, and J. I. Robinson. 2001. Computational framework for discontinuous modelling of masonry arch bridges. Computers & Structures 79 (19):1821–30. doi:https://doi.org/10.1016/S0045-7949(01)00102-X.
  • Wang, L. 2009. Studied of the decoration art for huizhou ancient bridges. PhD thesis, Xi’ an University of Architecture and Technology. [ In Chinese].
  • Wang, P. 2007. Ziye Collection–A collection of Architecture essays of Wang Puzi. 1st ed. Beijing, China: Forbidden City Publishers. [ In Chinese].
  • Wu, Z. 2018. Test and analysis of dynamic characteristics of main arch structure of stone arch bridge. Shanxi Architecture 44 (36):145–47. [ In Chinese].
  • Yang, Q. 2009. Static-load assessment test and reinforcing research of stone arch bridge. PhD thesis, Hefei University of Technology. [ In Chinese].
  • Zampieri, P., N. Simoncello, C. D. Tetougueni, and C. Pellegrino. 2018. A review of methods for strengthening of masonry arches with composite materials. Engineering Structures 171:154–69. doi:https://doi.org/10.1016/j.engstruct.2018.05.070.
  • Zani, G., P. Martinelli, A. Galli, C. Gentile, and M. Di Prisco. 2019. Seismic assessment of a 14th-century stone arch bridge: Role of soil-structure interaction. Journal of Bridge Engineering 24:050190087. doi:https://doi.org/10.1061/(ASCE)BE.1943-5592.0001441.
  • Zhang, J., and Y. Qian. 2008. Theoretical analysis of normal section bearing capacity of stone main arch ring strengthened by reinforced concrete. Journal of Highway and Transportation Research and Development 23 (6):76–80. [ In Chinese].
  • Zhang, L. 2015. An investigation into the ancient bridges’ present situation in Hangzhou city proper. Ph.D. thesis, Xi’an University of Architecture and Technology. [In Chinese].
  • Zhang, S., and Q. Chun. 2019. Research on strengthening techniques for Yongchang Bridge, a stone arch bridge built in the Ming Dynasty. Sciences of Conservation and Archaeology 31 (6):54–61.
  • Zhang, Y. 2008. The discuss and analyze of ancient bridge building Characteristic in Yunnan. Ph.D. thesis, Kunming University of Science and Technology. [In Chinese].
  • Zhou, L. 2008. The studies on the structural types and characteristic of ancient bridge in hunan. PhD thesis, Hunan University. [ In Chinese].

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