Comparison between Experimental and 3D Finite Element Analysis of Reinforced and Partially Pre-Stressed Concrete Solid Beams Subjected to Combined Load of Bending, Torsion and Shear

This paper presents a non-linear analysis of three reinforced and two partially prestressed concrete solid beams based on a 20 node isoparametric element using an in-house 3D finite element program. Anon linear elastic isotropic model, proposed by Kotsovos, was used to model concrete behaviour, whil...

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Main Author: A. S. Alnuaimi
Format: Article
Language:English
Published: Sultan Qaboos University 2008-12-01
Series:The Journal of Engineering Research
Subjects:
Online Access:https://journals.squ.edu.om/index.php/tjer/article/view/49
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spelling doaj-bd01b496ff6d443daaa88f54576d93742020-11-25T02:30:49ZengSultan Qaboos UniversityThe Journal of Engineering Research1726-60091726-67422008-12-0151799610.24200/tjer.vol5iss1pp79-9649Comparison between Experimental and 3D Finite Element Analysis of Reinforced and Partially Pre-Stressed Concrete Solid Beams Subjected to Combined Load of Bending, Torsion and ShearA. S. Alnuaimi0Department of Civil and Architectural Engineering, College of Engineering, PO Box 33, PC 123, Al Khoud, Muscat, OmanThis paper presents a non-linear analysis of three reinforced and two partially prestressed concrete solid beams based on a 20 node isoparametric element using an in-house 3D finite element program. Anon linear elastic isotropic model, proposed by Kotsovos, was used to model concrete behaviour, while steel was modelled as an embedded element exhibiting elastic-perfectly plastic response. Allowance was made for shear retention and for tension stiffening in concrete after cracking. Only in a fixed direction, smeared cracking modelling was adopted. The beams dimensions were 300x300 mm cross section, 3800 mm length and were subjected to combined bending, torsion and shear. Experimental results were compared with the non-linear predictions. The comparison was judged by load displacement relationship, steel strain, angle of twist, failure load, crack pattern and mode of failure. Good agreement was observed between the predicted ultimate load and the experimentally measured loads. It was concluded that the present program can confidently be used to predict the behaviour and failure load of reinforced and partially prestressed concrete solid beams subjected to a combined load of bending, torsion and shear.https://journals.squ.edu.om/index.php/tjer/article/view/49beam, solid beam, bending, shear, torsion, direct design, concrete, reinforced concrete, stress analysis, combined loading
collection DOAJ
language English
format Article
sources DOAJ
author A. S. Alnuaimi
spellingShingle A. S. Alnuaimi
Comparison between Experimental and 3D Finite Element Analysis of Reinforced and Partially Pre-Stressed Concrete Solid Beams Subjected to Combined Load of Bending, Torsion and Shear
The Journal of Engineering Research
beam, solid beam, bending, shear, torsion, direct design, concrete, reinforced concrete, stress analysis, combined loading
author_facet A. S. Alnuaimi
author_sort A. S. Alnuaimi
title Comparison between Experimental and 3D Finite Element Analysis of Reinforced and Partially Pre-Stressed Concrete Solid Beams Subjected to Combined Load of Bending, Torsion and Shear
title_short Comparison between Experimental and 3D Finite Element Analysis of Reinforced and Partially Pre-Stressed Concrete Solid Beams Subjected to Combined Load of Bending, Torsion and Shear
title_full Comparison between Experimental and 3D Finite Element Analysis of Reinforced and Partially Pre-Stressed Concrete Solid Beams Subjected to Combined Load of Bending, Torsion and Shear
title_fullStr Comparison between Experimental and 3D Finite Element Analysis of Reinforced and Partially Pre-Stressed Concrete Solid Beams Subjected to Combined Load of Bending, Torsion and Shear
title_full_unstemmed Comparison between Experimental and 3D Finite Element Analysis of Reinforced and Partially Pre-Stressed Concrete Solid Beams Subjected to Combined Load of Bending, Torsion and Shear
title_sort comparison between experimental and 3d finite element analysis of reinforced and partially pre-stressed concrete solid beams subjected to combined load of bending, torsion and shear
publisher Sultan Qaboos University
series The Journal of Engineering Research
issn 1726-6009
1726-6742
publishDate 2008-12-01
description This paper presents a non-linear analysis of three reinforced and two partially prestressed concrete solid beams based on a 20 node isoparametric element using an in-house 3D finite element program. Anon linear elastic isotropic model, proposed by Kotsovos, was used to model concrete behaviour, while steel was modelled as an embedded element exhibiting elastic-perfectly plastic response. Allowance was made for shear retention and for tension stiffening in concrete after cracking. Only in a fixed direction, smeared cracking modelling was adopted. The beams dimensions were 300x300 mm cross section, 3800 mm length and were subjected to combined bending, torsion and shear. Experimental results were compared with the non-linear predictions. The comparison was judged by load displacement relationship, steel strain, angle of twist, failure load, crack pattern and mode of failure. Good agreement was observed between the predicted ultimate load and the experimentally measured loads. It was concluded that the present program can confidently be used to predict the behaviour and failure load of reinforced and partially prestressed concrete solid beams subjected to a combined load of bending, torsion and shear.
topic beam, solid beam, bending, shear, torsion, direct design, concrete, reinforced concrete, stress analysis, combined loading
url https://journals.squ.edu.om/index.php/tjer/article/view/49
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