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Geometrically exact hybrid beam element based on nonlinear programming
Charilaos M. Lyritsakis
, Charalampos P. Andriotis
,
Konstantinos G. Papakonstantinou
Civil and Environmental Engineering
Research output
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Contribution to journal
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Article
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peer-review
2
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Keyphrases
Analytical Solution
33%
Beam Element
100%
Centroid
33%
Degrees of Freedom
33%
Edge Nodes
33%
Element Element
33%
Element-based
100%
Finite Element
33%
Flexibility-based
33%
Frame Structure
33%
Free Behavior
33%
Geometrically Exact
100%
Hybrid Beam
100%
Integral Approximation
33%
Kinematic Constraints
33%
Lagrange multiplier
33%
Lagrangian
33%
Lock-free
33%
Nonlinear Programming
100%
Numerical Examples
33%
Numerical Integration
33%
One Element per Member
33%
Optimality Conditions
33%
Outcome-based
33%
Planar Frames
33%
Quadrature
33%
Quadrature Points
33%
Quadrilateral Element
33%
Reissner
33%
Strain Measure
33%
Strain-displacement Relations
33%
Stress-strain Law
33%
Total Potential Energy
33%
Two-element Array
33%
Engineering
Beam Element
100%
Cross Section
33%
Degree of Freedom
33%
Displacement Relation
33%
Exact Theory
33%
Field Curvature
33%
Finite Element Analysis
33%
Frame Structure
33%
Lagrange Multiplier Method
33%
Material Stress
33%
Nodes
33%
Numerical Example
33%
Numerical Integration
33%
Objective Function
33%
Optimality
33%
Potential Energy
33%
Quadrature Point
33%
Quadrilateral Element
33%