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http://dx.doi.org/10.12989/sem.2008.28.2.207

Stress concentration and deflection of simply supported box girder including shear lag effect  

Yamaguchi, Eiki (Department of Civil Engineering, Kyushu Institute of Technology)
Chaisomphob, Taweep (School of Civil Engineering and Technology, Sirindhorn International Institute of Technology, Thammasat University)
Sa-nguanmanasak, Jaturong (School of Civil Engineering and Technology, Sirindhorn International Institute of Technology, Thammasat University)
Lertsima, Chartree (Asian Engineering Consultants Corp.)
Publication Information
Structural Engineering and Mechanics / v.28, no.2, 2008 , pp. 207-220 More about this Journal
Abstract
The shear lag has been studied for many years. Nevertheless, existing research gives a variety of stress concentration factors. Unlike the elementary beam theory, the application of load is not unique in reality. For example, concentrated load can be applied as point load or distributed load along the height of the web. This non-uniqueness may be a reason for the discrepancy of the stress concentration factors in the existing studies. The finite element method has been often employed for studying the effect of the shear lag. However, not many researches have taken into account the influence of the finite element mesh on the shear lag phenomenon, although stress concentration can be quite sensitive to the mesh employed in the finite element analysis. This may be another source for the discrepancy of the stress concentration factors. It also needs to be noted that much less studies seem to have been conducted for the shear lag effect on deflection while some design codes have formulas. The present study investigates the shear lag effect in a simply supported box girder by the three-dimensional finite element method using shell elements. The whole girder is modeled by shell elements, and extensive parametric study with respect to the geometry of a box girder is carried out. Not only stress concentration but also deflection is computed. The effect of the way load is applied and the dependency of finite element mesh on the shear lag are carefully treated. Based on the numerical results thus obtained, empirical formulas are proposed to compute stress concentration and deflection that includes the shear lag effect.
Keywords
shear lag; simply supported box girders; stress concentration; deflection; three-dimensional finite element analysis;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
Times Cited By Web Of Science : 2  (Related Records In Web of Science)
Times Cited By SCOPUS : 2
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1 Timoshenko, S.P. and Goodier, J.N. (1970), Theory of Elasticity, 3rd Edition, McGraw-Hill
2 Reissner, E. (1941), 'Least work solutions of shear lag problems', J. Aeronaut. Sci., 8, 284-291   DOI
3 Reissner, E. (1946), 'Analysis of shear lag in box beam by the principle of minimum potential energy', Q. Appl. Math., 6(3), 268-278
4 Sedlacek, G. and Bild, S. (1993), 'A simplified method for the determination of the effective width due to shear lag effects', J. Constr. Steel Res., 24, 155-182   DOI   ScienceOn
5 Song, Q.G. and Scordelis, A.C. (1990), 'Formulas for shear-lag effect of T-, I-, and box beams', J. Struct. Eng., ASCE, 116(5), 1306-1318   DOI
6 Lee, C.K. and Wu, G.J. (2000), 'Shear lag analysis by the adaptive finite element method 1: Analysis of simple plated structures', Thin Wall. Struct., 38, 285-309   DOI   ScienceOn
7 Tahan, N., Pavlovic, M.N. and Kotsovos, M.D. (1997), 'Shear-lag revisited: The use of single Fourier series for determining the effective breadth in plated structures', Comput. Struct., 63(4), 759-767   DOI   ScienceOn
8 Eurocode 3 (2003), Design of Steel Structures, prEN 1993 1-5, CEN
9 British Standards Institution (1982), Steel, Concrete and Composite Bridges, BS 5400, Part 3, Code of Practice for Design of Composite Bridges
10 Cook, R.D., Malkus, D.S. and Plesha, M.E. (1989), Concepts and Applications of Finite Element Analysis, 3rd Edition, John Wiley & Sons
11 Hwang, W.S., Kim, Y.P. and Park, Y.M. (2004), 'Evaluation of shear lag parameters for beam-to-column connections in steel piers', Struct. Eng. Mech., 17(5), 691-706   DOI   ScienceOn
12 Tenchev, R.T. (1996), 'Shear lag in orthotropic beam flanges and plates with stiffeners', Int. J. Solids Struct., 33(9), 1317-1334   DOI   ScienceOn
13 Japan Road Association (2002), Design Specifications for Highway Bridges, Part II Steel Bridges, Maruzen
14 MARC Analysis Research Corporation (1994), MARC manuals-Vol. A-D, Rev. K.6, Palo Alto, Calif
15 Moffatt, K.R. and Dowling, P.J. (1975), 'Shear lag in steel box girder bridges', Struct. Eng., 53(10), 439-448