The aeroelastic behavior of suspension bridges under generic temporal and space wind distributions is studied employing a parametric one-dimensional structural model coupled with a strip-based indicial representation of the unsteady aerodynamic loads. The aeroelastic response to spatially nonuniform gusts is also investigated. The equations of motion linearized about the prestressed aerostatic equilibrium are expressed in terms of incremental kinematic variables. The aerodynamic loading characteristics of the deck cross sections of the Runyang Suspension Bridge (over the Yangtze river in China) are evaluated by means of computational fluid dynamics simulations performed to extract the aeroelastic derivatives from which the indicial aerodyna...
The present contribution presents the results of flutter analyses conducted on a finite element mode...
Significant developments in bridge aeroelastic analysis have been made utilizing realistic aerodynam...
This paper presents a time domain analysis framework for predicting nonlinear response of long-span ...
A parametric one-dimensional model of suspension bridges is employed to investigate their static and...
We investigate the effects of steady aerodynamic loads on stability and natural frequencies of long-...
Wind-induced vibration in super-long-span bridges is a major concern for the designers. There is a n...
We investigate the effects of steady aerodynamic loads on stability and natural frequencies of long-...
Suspension bridges are long-span flexible structures susceptible to various types of wind induced vi...
Wind-induced vibrations commonly represent the leading criterion in the design of long-span bridges....
Traditionally, the estimation of wind induced buffeting response and analysis of flutter instability...
We investigate the dynamic stability of a single-span suspension bridge deck, subjected to a uniform...
In this paper a time domain approach for predicting the non-linear dynamic response of long-span bri...
A linearized parametric continuum model of a long-span suspension bridge is coupled with a nonlinear...
Aerodynamic analysis is of primary consideration in designing long-span bridges. Theoretical models ...
In this paper a time domain approach for predicting the non-linear dynamic response of long-span bri...
The present contribution presents the results of flutter analyses conducted on a finite element mode...
Significant developments in bridge aeroelastic analysis have been made utilizing realistic aerodynam...
This paper presents a time domain analysis framework for predicting nonlinear response of long-span ...
A parametric one-dimensional model of suspension bridges is employed to investigate their static and...
We investigate the effects of steady aerodynamic loads on stability and natural frequencies of long-...
Wind-induced vibration in super-long-span bridges is a major concern for the designers. There is a n...
We investigate the effects of steady aerodynamic loads on stability and natural frequencies of long-...
Suspension bridges are long-span flexible structures susceptible to various types of wind induced vi...
Wind-induced vibrations commonly represent the leading criterion in the design of long-span bridges....
Traditionally, the estimation of wind induced buffeting response and analysis of flutter instability...
We investigate the dynamic stability of a single-span suspension bridge deck, subjected to a uniform...
In this paper a time domain approach for predicting the non-linear dynamic response of long-span bri...
A linearized parametric continuum model of a long-span suspension bridge is coupled with a nonlinear...
Aerodynamic analysis is of primary consideration in designing long-span bridges. Theoretical models ...
In this paper a time domain approach for predicting the non-linear dynamic response of long-span bri...
The present contribution presents the results of flutter analyses conducted on a finite element mode...
Significant developments in bridge aeroelastic analysis have been made utilizing realistic aerodynam...
This paper presents a time domain analysis framework for predicting nonlinear response of long-span ...