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Buckling of unconfined and confined thin-walled steel cylinders under external pressure

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Autore
Vasilikis, D.; Karamanos, S. A.
Data
2008
Soggetto
Buckling
Finite Elements
Pipeline
Plasticity
Stability
Thin-Walled
Buried pipelines
Closed-form expression
Cylinder axis
Elastic medium
External pressures
Geometric and material nonlinearities
Initial gap
Maximum pressure
Non-linear finite elements
Numerical results
Out of roundness
Steel cylinders
Structural stabilities
Two dimensional model
Uniform external pressure
Asset management
Cements
Cylinders (shapes)
Finite element method
Pipelines
Steel
Thin walled structures
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Abstract
The present paper investigates the structural stability of thin-walled steel cylinders subjected to uniform external pressure. A brief discussion of unconfined steel cylinder buckling is presented first. Subsequently, motivated by the design of buried pipelines, buckling of confined steel cylinders, surrounded by an elastic medium, is examined. A two dimensional model is developed, assuming no variation of load and deformation along the cylinder axis. The cylinder and the surrounding medium are simulated with nonlinear finite elements that account for both geometric and material nonlinearities. The external pressure response of confined thin-walled steel cylinders is examined, in terms of initial the out-of-roundness of the cylinder, the initial gap between the cylinder and the medium, and the stiffness of the surrounding medium. Numerical results show a rapid drop of pressure after reaching the maximum pressure level. Finally, the numerical results show good comparison with a simplified closed-form expression, proposed elsewhere, which could be used for buried pipeline design purposes. © 2008 ASCE.
URI
http://hdl.handle.net/11615/34366
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