A platform for research: civil engineering, architecture and urbanism
Calculation procedure for determining wind action from vortex-induced vibration with verification of fatigue strength of steel structures
An applicable calculation procedure, implemented with an object-oriented software that calculates amplitudes of oscillation due to vortex shedding, is presented in this paper using a stadium lighting pole as an example. The fatigue strength of material is proven, for the defined S-N curves, according to the nominal stress method. Available Eurocode-based calculation methods are also analysed and their advantages and disadvantages are presented.
Calculation procedure for determining wind action from vortex-induced vibration with verification of fatigue strength of steel structures
An applicable calculation procedure, implemented with an object-oriented software that calculates amplitudes of oscillation due to vortex shedding, is presented in this paper using a stadium lighting pole as an example. The fatigue strength of material is proven, for the defined S-N curves, according to the nominal stress method. Available Eurocode-based calculation methods are also analysed and their advantages and disadvantages are presented.
Calculation procedure for determining wind action from vortex-induced vibration with verification of fatigue strength of steel structures
Marina Rakočević (author) / Svetislav Popović (author)
2018
Article (Journal)
Electronic Resource
Unknown
Metadata by DOAJ is licensed under CC BY-SA 1.0
British Library Online Contents | 2009
|Active vibration suppression device for wind-induced vortex-induced vibration
European Patent Office | 2024
|Wind-Induced Fatigue Verification Standard Methods
Springer Verlag | 2019
|Fatigue damage of a steel catenary riser from vortex-induced vibration caused by vessel motions
Online Contents | 2014
|