NONLINEAR FINITE ELEMENT FOR REINFORCED CONCRETE SLABS
This paper presents a new finite element for the nonlinear analysis of reinforced concrete (RC) slabs. The element combines a four-node Kirchhoff shell element for concrete with two-node Euler beam elements for the steel reinforcement bars. The connectivity between reinforcement beam elements and concrete shell element is achieved by means of rigid links. By using the transformation method for rigid links, beam nodes are eliminated from the final mesh of the structure. The stiffness and resisting forces from the reinforcement are implicitly included in the new element. In this manner, this finite element is able to take into account the location of the reinforcement bars. This is in contrast to the smeared method, which is often adopted in the layered modeling of RC slabs. The new finite element is verified with experimental results. It is shown that a good agreement exists between the analyses results using the new finite element and the experimental results.
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Availability:
- Find a library where document is available. Order URL: http://worldcat.org/issn/07339445
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Corporate Authors:
American Society of Civil Engineers
1801 Alexander Bell Drive
Reston, VA United States 20191-4400 -
Authors:
- Phuvoravan, K
- Sotelino, E D
- Publication Date: 2005-4-1
Language
- English
Media Info
- Features: Figures; References;
- Pagination: p. 643-649
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Serial:
- Journal of Structural Engineering
- Volume: 131
- Issue Number: 4
- Publisher: American Society of Civil Engineers
- ISSN: 0733-9445
- Serial URL: http://ascelibrary.org/loi/jsendh
Subject/Index Terms
- TRT Terms: Beams; Finite element method; Nonlinear equations; Reinforced concrete; Reinforcing bars; Shells (Structural forms); Slabs; Stiffness
- Subject Areas: Bridges and other structures; Design; Highways; I24: Design of Bridges and Retaining Walls;
Filing Info
- Accession Number: 00987587
- Record Type: Publication
- Files: TRIS
- Created Date: Mar 30 2005 12:00AM