bridges;
skew;
concrete slabs;
finite element method;
highway;
concrete;
reinforced;
D O I:
10.1061/(ASCE)1084-0702(2007)12:2(205)
中图分类号:
TU [建筑科学];
学科分类号:
0813 ;
摘要:
The effect of a skew angle on simple-span reinforced concrete bridges is presented in this paper using the finite-element method. The parameters investigated in this analytical study were the span length, slab width, and skew angle. The finite-element analysis (FEA) results for skewed bridges were compared to the reference straight bridges as well as the American Association for State Highway and Transportation Officials (AASHTO) Standard Specifications and LRFD procedures. A total of 96 case study bridges were analyzed and subjected to AASHTO HS-20 design trucks positioned close to one edge on each bridge to produce maximum bending in the slab. The AASHTO Standard Specifications procedure gave similar results to the FEA maximum longitudinal bending moment for a skew angle less than or equal to 20 degrees. As the skew angle increased, AASHTO Standard Specifications overestimated the maximum moment by 20% for 30 degrees, 50% for 40 degrees, and 100% for 50 degrees. The AASHTO LRFD Design Specifications procedure overestimated the FEA maximum longitudinal bending moment. This overestimate increased with the increase in the skew angle, and decreased when the number of lanes increased; AASHTO LRFD overestimated the longitudinal bending moment by up to 40% for skew angles less than 30 degrees and reaching 50% for 50 degrees. The ratio between the three-dimensional FEA longitudinal moments for skewed and straight bridges was almost one for bridges with skew angle less than 20 degrees. This ratio decreased to 0.75 for bridges with skew angles between 30 and 40 degrees, and further decreased to 0.5 as the skew angle of the bridge increased to 50 degrees. This decrease in the longitudinal moment ratio is offset by an increase of up to 75% in the maximum transverse moment ratio as the skew angle increases from 0 to 50 degrees. The ratio between the FEA maximum live-load deflection for skewed bridges and straight bridges decreases in a pattern consistent with that of the longitudinal moment. This ratio decreased from one for skew angles less than 10 degrees to 0.6 for skew angles between 40 and 50 degrees.
机构:
Department of Civil and Environmental Engineering, American University of Beirut, BeirutDepartment of Civil and Environmental Engineering, American University of Beirut, Beirut
Fawaz G.
Waked M.
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机构:
Department of Civil and Environmental Engineering, American University of Beirut, Beirut
WSP Middle East, DubaiDepartment of Civil and Environmental Engineering, American University of Beirut, Beirut
Waked M.
Mabsout M.
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机构:
Department of Civil and Environmental Engineering, American University of Beirut, BeirutDepartment of Civil and Environmental Engineering, American University of Beirut, Beirut
Mabsout M.
Tarhini K.
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机构:
Department of Civil Engineering, U.S. Coast Guard Academy, New London, CTDepartment of Civil and Environmental Engineering, American University of Beirut, Beirut
机构:
New Mexico State Univ, Dept Civil Engn, Hernandez Hall,3035 S Espina St, Las Cruces, NM 88003 USANew Mexico State Univ, Dept Civil Engn, Hernandez Hall,3035 S Espina St, Las Cruces, NM 88003 USA
Cuaron, Alain M.
Jauregui, David, V
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New Mexico State Univ, Dept Civil Engn, Hernandez Hall,3035 S Espina St, Las Cruces, NM 88003 USANew Mexico State Univ, Dept Civil Engn, Hernandez Hall,3035 S Espina St, Las Cruces, NM 88003 USA
Jauregui, David, V
Weldon, Brad D.
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New Mexico State Univ, Dept Civil Engn, Hernandez Hall,3035 S Espina St, Las Cruces, NM 88003 USANew Mexico State Univ, Dept Civil Engn, Hernandez Hall,3035 S Espina St, Las Cruces, NM 88003 USA