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THE APPLICATION OF A METHOD OF BOUNDARY INTEGRAL EQUATIONS OF A THEORY OF ELASTICITY FOR MODELING OF AEROELASTICITY OF BRIDGE STRUCTURES
This work describes modeling of winding of bridge structures by the wind flow for non- bound systems with an application of a method of the boundary integral equations and is de- voted to aerodynamical analysis of bound systems of interaction of solid bodies and gas, i.e. to aeroelasticity of span structures and pylons. The solutions of the 'wind flow - bridge struc- tures' interaction problems in the form of multi zonal and variation approaches are shown in the theoretical part.
THE APPLICATION OF A METHOD OF BOUNDARY INTEGRAL EQUATIONS OF A THEORY OF ELASTICITY FOR MODELING OF AEROELASTICITY OF BRIDGE STRUCTURES
This work describes modeling of winding of bridge structures by the wind flow for non- bound systems with an application of a method of the boundary integral equations and is de- voted to aerodynamical analysis of bound systems of interaction of solid bodies and gas, i.e. to aeroelasticity of span structures and pylons. The solutions of the 'wind flow - bridge struc- tures' interaction problems in the form of multi zonal and variation approaches are shown in the theoretical part.
THE APPLICATION OF A METHOD OF BOUNDARY INTEGRAL EQUATIONS OF A THEORY OF ELASTICITY FOR MODELING OF AEROELASTICITY OF BRIDGE STRUCTURES
A S Dorogan (author)
2014
Article (Journal)
Electronic Resource
Unknown
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