Pushover Analysis on Wood Framed Construction based on Refined Three-Dimensional Finite Element Model
Author(s): |
Haibei Xiong
Jiahua Kang Xilin Lu |
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Medium: | conference paper |
Language(s): | English |
Conference: | 35th Annual Symposium of IABSE / 52nd Annual Symposium of IASS / 6th International Conference on Space Structures: Taller, Longer, Lighter - Meeting growing demand with limited resources, London, United Kingdom, September 2011 |
Published in: | IABSE-IASS 2011 London Symposium Report |
Year: | 2011 |
Abstract: |
In this paper, a refine 3D nonlinear finite element model (FEModel) of the wood framed construction capable of pushover analysis were developed firstly. And then static nonlinear pushover analysis was conducted utilizing the inverted triangle (first mode) load pattern in order to get the seismic capacity pushover curve of the FEModel. Based on the pushover curve the improved capacity-demand-diagram method was adopted to estimate the story deformation demand of the wood framed construction with selected inelastic design spectrum with 5% damping ratio. Deformation demand were compared with the allowable value regulated in code to evaluate the seismic performance of the wood framed construction. At last the relationship between nail connection stage in the form of graph and story deformation in the whole deformation processing was discussed. |
Keywords: |
seismic performance refine 3D nonlinear finite model wood framed construction: pushover deformation demand nail failure
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