2023
DOI: 10.3390/buildings13092239
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Finite Element Analysis of Curved Beam Elements Employing Trigonometric Displacement Distribution Patterns

Hengtao Cao,
Daihai Chen,
Yunsen Zhang
et al.

Abstract: A finite element analysis (FEA) model was developed for Euler and Timoshenko curved beam elements by incorporating trigonometric displacement distribution patterns. Local polar coordinate stiffness matrices were derived based on force-displacement relations and static equilibrium conditions. By employing the kinetic energy theorem and triangular displacement functions, an expression for the consistent mass matrix of a curved beam element was obtained. A coordinate transformation matrix for the curved beam elem… Show more

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(1 citation statement)
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“…In the finite element analysis (FEA) of curved girder bridges, the curved beam element, the straight beam element, the mass point element, and the spring element can be selected to discretize the bridge structure [16][17][18]. By calculating the kinetic and potential energies of each unit and structure, the vibration equation of the bridge structure is derived through Hamilton's principle.…”
Section: Vehicle-bridge Coupled Vibration Of Curved Girder Bridgesmentioning
confidence: 99%
“…In the finite element analysis (FEA) of curved girder bridges, the curved beam element, the straight beam element, the mass point element, and the spring element can be selected to discretize the bridge structure [16][17][18]. By calculating the kinetic and potential energies of each unit and structure, the vibration equation of the bridge structure is derived through Hamilton's principle.…”
Section: Vehicle-bridge Coupled Vibration Of Curved Girder Bridgesmentioning
confidence: 99%