Technical Papers
Jul 8, 2015

Finite-Element Formulations for the Distortional Analysis of Wide Flange Steel Beams

Publication: Journal of Engineering Mechanics
Volume 142, Issue 2

Abstract

Two finite-element formulations are developed for the general distortional analysis of beams with monosymmetric sections. In the first formulation, cubic and linear Hermitian polynomials are adopted to interpolate the nodal displacements; whereas in the second formulation, shape functions that exactly satisfy the governing field equations were used. Because the distortional lateral-torsional and the longitudinal-transverse responses are fully uncoupled, separate finite elements were developed for both types of behaviors. A comparison with other finite-element solutions and a recently developed distortional theory established the validity of the present formulations. A study was then performed on the stability and convergence characteristics of both elements. The new elements were then adopted to solve linearly static analysis of simple beams and beams with overhangs. The formulation is shown to reliably capture the difference in behavior between stiffened and unstiffened beams.

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Go to Journal of Engineering Mechanics
Journal of Engineering Mechanics
Volume 142Issue 2February 2016

History

Received: Jul 25, 2014
Accepted: Jun 9, 2015
Published online: Jul 8, 2015
Discussion open until: Dec 8, 2015
Published in print: Feb 1, 2016

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Payam Pezeshky, S.M.ASCE [email protected]
Research Assistant, Dept. of Civil Engineering, Univ. of Ottawa, Ottawa, ON, Canada K1N 6N5. E-mail: [email protected]
Magdi Mohareb, M.ASCE [email protected]
Professor, Dept. of Civil Engineering, Univ. of Ottawa, Ottawa, ON, Canada K1N 6N5 (corresponding author). E-mail: [email protected]

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