共 50 条
- [31] Giambanco G, Ribolla Emma L M, Spada A., Meshless meso-modeling of masonry in the computational homogenization framework [J], Meccanica, 53, 7, pp. 1673-1697, (2018)
- [32] Silva L C, Lourenco P B, Milani G., Derivation of the out-of-plane behaviour of masonry through homogenization strategies: Micro-scale level [J], Computers and Structures, 209, pp. 30-43, (2018)
- [33] Krejci T, Kruis J, Sejnoha M, Et al., Hybrid parallel approach to homogenization of transport processes in masonry [J], Advances in Engineering Software, 113, SI, pp. 25-33, (2017)
- [34] Clough R W, Wilson E L., Dynamic analysis of large structural systems with local nonlinearities [J], Computer Methods in Applied Mechanics and Engineering, 17, pp. 107-129, (1979)
- [35] Sun Baoyin, Gu Quan, Zhang Peizhou, Et al., Elastoplastic numerical substructure method of reinforced concrete frame structures, Engineering Mechanics, 33, 5, pp. 44-49, (2016)
- [36] Sun Baoyin, Gu Quan, Zhang Peizhou, Et al., Elastoplastic numerical substructure method of frame structure considering P-Δ effects, Engineering Mechanics, 35, 2, pp. 153-159, (2018)
- [37] Akgun M A, Garcelon J H, Haftka R T., Fast exact linear and non-linear structural reanalysis and the Sherman-Morrison-Woodbury formulas [J], International Journal for Numerical Methods in Engineering, 50, 7, pp. 1587-1606, (2002)
- [38] Kirsch U., Reanalysis and sensitivity reanalysis by combined approximations [J], Structural and Multidisciplinary Optimization, 40, pp. 1-15, (2010)
- [39] Li G, Wong K., Theory of nonlinear structural analysis: the force analogy method for earthquake engineering [M], (2014)
- [40] Li G, Zhang Y, Li H., Nonlinear seismic analysis of reinforced concrete frames using the force analogy method [J], Earthquake Engineering and Structural Dynamics, 43, 14, pp. 2115-2134, (2014)