Acknowledgement
Supported by : China Postdoctoral Science Foundation
References
- ANSYS Multiphysics 10.0. (2003). Canonsburg. Pennsylvania: Ansys Inc.
- Chen, L., Hu, D., Deng, H., Cui, Y., & Zhou, Y. (2016). Optimization of the construction scheme of the cable-strut tensile structure based on error sensitivity analysis. Steel and Composite Structures, 21(5), 1031-1043. https://doi.org/10.12989/scs.2016.21.5.1031
- Chen, Z., Liu, H., Wang, X., & Zhou, T. (2011). Establishment and application of cable-sliding criterion equation. Advanced Steel Construction, 7(2), 131-143.
- Kchaou, M., Sellami, A., Abu, B., Lazim, A., Elleuch, R., & Kumar, S. (2015). Brass fillers in friction composite materials: Tribological and brake squeal characterization for suitable effect evaluation. Steel and Composite Structures, 19(4), 939-952. https://doi.org/10.12989/scs.2015.19.4.939
- Larsen, A., & Guy, L. (2015). Dynamic wind effects on suspension and cable-stayed bridges. Journal of Sound and Vibration, 334, 2-28. https://doi.org/10.1016/j.jsv.2014.06.009
- Lei, X. (2001). Contact friction analysis with a simple interface element. Computer Methods in Applied Mechanics and Engineering, 190(15-17), 1955-1965. https://doi.org/10.1016/S0045-7825(00)00196-1
- Lei, X. Y., Swoboda, G., & Zenz, G. (1995). Application of contactfriction interface element to tunnel excavation in faulted rock. Computers and Geotechnics, 17, 349-370. https://doi.org/10.1016/0266-352X(95)99217-F
- Li, J., & Chan, S. (2004). An integrated analysis of membrane structures with flexible supporting frames. Finite Elements in Analysis and Design, 40(5), 529-540. https://doi.org/10.1016/S0168-874X(03)00076-3
- Liang, B., Zhao, Z., & Liu, H. (2017). The establishment of numerical model of structural cables with considering friction. Journal of Constructional Steel Research, 139, 424-436. https://doi.org/10.1016/j.jcsr.2017.09.031
- Liu, H., & Chen, Z. (2012a). Research on effect of sliding between hoop cable and cable-strut joint on behavior of suspen-dome structures. Advanced Steel Construction, 8(4), 359-365.
- Liu, H., & Chen, Z. (2012b). Structural behavior of the suspen-dome structures and the cable dome structures with sliding cable joints. Structural Engineering and Mechanics, 43(1), 53-70. https://doi.org/10.12989/sem.2012.43.1.053
- Liu, H., & Chen, Z. (2012c). Influence of cable sliding on the stability of suspen-dome with stacked arches structures. Advanced Steel Construction, 8(1), 54-70.
- Liu, H., Chen, Z., & Wang, X. (2011). Simulation of pre-stressing construction of suspen-dome considering sliding friction based large curvature assumption. Advanced Science Letters, 4(8-10), 2713-2718. https://doi.org/10.1166/asl.2011.1716
- Liu, H., Chen, Z., & Zhou, T. (2009). Prestress loss induced by friction in suspendome construction. Journal of Tianjin University, 42(12), 1055-1060.
- Liu, H., Chen, Z., & Zhou, T. (2012). Research on the process of prestressing construction of suspen-dome considering temperature effect. Advances in Structural Engineering, 15(3), 489-493. https://doi.org/10.1260/1369-4332.15.3.489
- Michael, G. (1983). A simple contact-friction interface element with applications to buried culverts. International Journal for Numerical and Analytical Methods in Geomechanics, 7, 371-384. https://doi.org/10.1002/nag.1610070308
- Ni, Y. Q., Ko, J. M., & Zheng, G. (2002). Dynamic analysis of largediameter sagged cables taking into account flexural rigidity. Journal of Sound and Vibration, 257(2), 301-319. https://doi.org/10.1006/jsvi.2002.5060
- Qiao, W. T., An, Q., Wang, D., & Zhao, M. S. (2016). Study on mechanical behaviors of cable-supported ribbed beam composite slab structure during construction phase. Steel and Composite Structures, 21(1), 177-194. https://doi.org/10.12989/scs.2016.21.1.177
- Tang, J., Dong, M., & Qian, R. (1997). A finite element method with five node isoparametric element for nonlinear analysis of tension structures. Chinese Journal of Computational Mechanics, 14(1), 108-113.
- Thai, H., & Kim, S. (2011). Nonlinear static and dynamic analysis of cable structures. Finite Elements in Analysis and Design, 47(3), 237-246. https://doi.org/10.1016/j.finel.2010.10.005
- Treyssede, F. (2010). Vibration analysis of horizontal self-weighted beams and cables with bending stiffness subjected to thermal loads. Journal of Sound and Vibration, 329(9), 1536-1552. https://doi.org/10.1016/j.jsv.2009.11.018
- Wang, Y., et al. (2007). FEM analysis and experimental study on monolayer cable net for glass facades: Static performance. Advances in Structural Engineering, 10(4), 371-382. https://doi.org/10.1260/136943307783239345
- Wei, J. (2004). Sliding cable element for the analysis of cable structures. Engineering Mechanics, 21(6), 172-177.
- Wei, J. (2006). Friction gliding cable element in analysis of gliding cable structures. Engineering Mechanics, 23(9), 66-70.
- Yan, R., Chen, Z., Wang, X., Liu, H., & Xiao, X. (2015). A new equivalent friction element for analysis of cable supported structures. Steel and Composite Structures, 18(4), 947-970. https://doi.org/10.12989/scs.2015.18.4.947
- Zahrai, S., Moradi, A., & Moradi, M. (2015). Using friction dampers in retrofitting a steel structure with masonry infill panels. Steel and Composite Structures, 19(2), 309-325. https://doi.org/10.12989/scs.2015.19.2.309
- Zarate, B., & Juan, M. (2015). Effects of cable dynamics in the modeling of cable-stayed bridges under seismic excitation. International Journal of Structural Stability and Dynamics, 15(04), 1450061. https://doi.org/10.1142/S0219455414500618
- Zhang, Z., & Dong, S. (2001). Slippage analysis of continuous cable in tension structures. Spatial structures, 7(3), 26-32.
- Zhao, Z., Liang, B., Liu, H., & Li, Y. (2018). Simplified numerical model for high-strength bolted connections. Engineering Structures, 164, 119-127. https://doi.org/10.1016/j.engstruct.2018.02.079
- Zhu, M., Dong, S., & Yuan, X. (2013). Failure analysis of a cable dome due to cable slack or rupture. Advances in Structural Engineering, 16(2), 259-271. https://doi.org/10.1260/1369-4332.16.2.259
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