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1 Tu, Z.G. and Lu, Y. (2011), "Mesoscale modelling of concrete for static and dynamic response analysis, Part 1: Model development and implementation", Struct. Eng. Mech., 37(2), 197-213./   DOI View Article
2 Lu, Y. and Tu, Z.G. (2011), "Mesoscale modelling of concrete for general FE analysis - Part 2: Numerical investigation under static and dynamic loading conditions", Struct. Eng. Mech., 37(2), 215-231./   DOI View Article
3 Alavi, A.H. and Gandomi, A.H. (2011), "A robust data mining approach for formulation of geotechnical engineering systems", Int. J. Comput. Aid. Meth. Eng.-Eng. Computat., 28(3)./ View Article
4 Kmet, S. and Tomko, M. (2011), "Time-dependent analysis of cable trusses Part I. Closed-form computational model", Struct. Eng. Mech., 38(2),/ View Article
5 Liu, M.F., Chang, T.P. and Zeng, D.Y. (2011), "The interactive vibration behavior in a suspension bridge system under moving vehicle loads and vertical seismic excitations", Appl. Math. Model., 35(1), 398-411./   DOI   Ndsl View Article
6 Liu, M.F., Chang, T.P. and Zeng, D.Y. (2011), "The interactive vibration behavior in a suspension bridge system under moving vehicle loads and vertical seismic excitations", Appl. Math. Model., 35(1), 398-411./   DOI   Ndsl View Article
7 An, D., Choi, J.H., Kim, N.H. and Pattabhiraman, S. (2011), "Fatigue life prediction based on Bayesian approach to incorporate field data into probability model", Struct. Eng. Mech., 37(4), 427-442./   DOI View Article
8 An, D., Choi, J.H., Kim, N.H. and Pattabhiraman, S. (2011), "Fatigue life prediction based on Bayesian approach to incorporate field data into probability model", Struct. Eng. Mech., 37(4), 427-442./   DOI View Article
9 Killpack, M. and Abed-Meraim, F. (2011), "Limit-point buckling analyses using solid, shell and solid-shell elements", J. Mech. Sci. Tech., 25, 1105-1117./   DOI View Article
10 Elmaimouni, L., Lefebvre, J.E., Ratolojanahary, F.E., Raherison, Gryba T. and Carlier, J. (2011), "Modal analysis and harmonic response of resonators: An extension of a mapped orthogonal functions technique", Wave Motion, 48, 93-104/   DOI   Ndsl View Article