EFFECT OF MODELING ON NLFE ANALYSIS OF CONCRETE STRUCTURES
This paper describes a technique of modeling concrete material properties for use in smeared cracking nonlinear finite element analysis of two-dimensional reinforced concrete structures. The technique is applied to, and the predicted results are compared with, experimental results of 11 concrete beams which include examples both with and without web reinforcement, and for which the shear-span-to-depth ratio varies from 0.5-7. Reasonable correspondence with test results is obtained for all of the six different failure modes exhibited by the test beams. The effect of varying the material parameters on the finite element prediction is examined, and a limited study of the effect of mesh refinement and variation of fracture energy parameters is included. It is concluded that nonlinear finite element analysis has developed to the point where reliable ultimate load analyses of two-dimensional concrete structures can be carried out.
-
Availability:
- Find a library where document is available. Order URL: http://worldcat.org/issn/07339445
-
Corporate Authors:
American Society of Civil Engineers
345 East 47th Street
New York, NY United States 10017-2398 -
Authors:
- Balakrishnan, Sivaneasan
-
0000-0002-4271-2677
- Elwi, A E
- Murray, D W
- Publication Date: 1988-7
Media Info
- Features: Appendices; Figures; References; Tables;
- Pagination: p. 1467-87
-
Serial:
- Journal of Structural Engineering
- Volume: 114
- Issue Number: 7
- Publisher: American Society of Civil Engineers
- ISSN: 0733-9445
- Serial URL: http://ascelibrary.org/loi/jsendh
Subject/Index Terms
- TRT Terms: Beams; Concrete; Concrete structures; Failure; Finite element method; Mathematical models; Reinforced concrete; Structural analysis; Structural mechanics; Webbing
- Uncontrolled Terms: Concrete beams; Models; Structural failures
- Subject Areas: Bridges and other structures; Design; Highways; I24: Design of Bridges and Retaining Walls;
Filing Info
- Accession Number: 00469549
- Record Type: Publication
- Files: TRIS
- Created Date: Jul 31 1988 12:00AM