Chapter
Apr 26, 2012
Seismic Damage Analysis Model for RC Structures Based on Concrete Plastic Damage Model
Authors: Z. H. Li [email protected], J. Teng [email protected], and X. F. He [email protected]Author Affiliations
Publication: Structures Congress 2011
Abstract
Firstly, a plastic-damage constitutive model for concrete complying with the laws of thermodynamics is proposed based on continuum damage mechanics theory. The damage constitutive equations, damage evolution equations and plastic deformation of concrete are derived. Secondly, Fiber damage analysis model(FDAM) for RC beam-column member is established by analyzing section of fiber beam column element, which was developed with VUEL subroutine based on ABAQUS/Explicit platform, with the uniaxial damage constitutive relations of concrete proposed in present paper being used. The member damage index is defined, which can describe the nonlinear damage behavior of RC members under any loadings. Accuracy of the model is identified preliminarily by comparing with the analysis results of solid element. Finally, a numerical analysis model based on finite element program ABAQUS combined with the proposed damage model is built to analyze the seismic damage of a high-rise structure, and the structure analysis results are compared to the data from shaking table test.
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© 2011 American Society of Civil Engineers.
History
Published online: Apr 26, 2012
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ASCE Technical Topics:
- Concrete
- Concrete structures
- Damage (material)
- Damage (structural)
- Engineering fundamentals
- Engineering materials (by type)
- Forensic engineering
- Materials characterization
- Materials engineering
- Models (by type)
- Reinforced concrete
- Seismic tests
- Structural analysis
- Structural engineering
- Structural models
- Structures (by type)
- Tests (by type)
Authors
Affiliations
School of Civil Engineering, Dalian University of Technology, Dalian 116024, P.R. China.E-mail: [email protected]
Shenzhen Graduate School, Harbin Institute of Technology, Shenzhen 518055, P.R. China.E-mail: [email protected]
Shenzhen Graduate School, Harbin Institute of Technology, Shenzhen 518055, P.R. China.E-mail: [email protected]
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