This work deals with the evaluation of the effects of the spatial variability of earthquake input motion on the dynamic response of structures. The variability of the free-field motion both over the area of a single foundation as well as over the distance between independent foundations of large structures is considered. Two significant applications of the proposed numerical procedure are presented. In the first one a base isolated nuclear reactor building is considered where the issue of the rocking excitation on the peak value of axial forces in the isolation devices and acceleration in the building structure is investigated. Extended structures having tall members are considered as second application. A cable-supported bridge model, form...
Four main factors may contribute to the spatial variation of earthquake excitations, i.e. coherency ...
During strong ground motion, it is expected that bridge structures are subjected to excitation that ...
Report No. CCEER 02-2This report focuses on analyzing the influence of three factors: geometric inco...
This work deals with the evaluation of the effects of the spatial variability of earthquake input mo...
An approach to seismic analysis of bridges under spatially variable ground motions is presented. The...
The spatial variability of the input ground motion at the supporting foundations plays a key role in...
Observations have shown significant incoherence in earthquake ground motions measured at different l...
The effects of the spatial variability of the ground motion on the response of bridge structures are...
Spatial variation of seismic ground motions is caused by incoherence effect, wave passage, and local...
In this paper, numerical results from a non-linear dynamic response analysis of a 50 m long two-span...
This paper investigates seismic response of a realistic large dimension steel trussed arch structure...
Spatial variation of ground motion has significant effect on the earthquake response of structures t...
The aim of this study is to develop design criteria, which account for the effects of earthquakes sp...
This paper examines the impact of stochastic spatial variability of seismic ground motion on the sei...
The paper discusses the effects of seismic wave incoherency on the free-field and structural respons...
Four main factors may contribute to the spatial variation of earthquake excitations, i.e. coherency ...
During strong ground motion, it is expected that bridge structures are subjected to excitation that ...
Report No. CCEER 02-2This report focuses on analyzing the influence of three factors: geometric inco...
This work deals with the evaluation of the effects of the spatial variability of earthquake input mo...
An approach to seismic analysis of bridges under spatially variable ground motions is presented. The...
The spatial variability of the input ground motion at the supporting foundations plays a key role in...
Observations have shown significant incoherence in earthquake ground motions measured at different l...
The effects of the spatial variability of the ground motion on the response of bridge structures are...
Spatial variation of seismic ground motions is caused by incoherence effect, wave passage, and local...
In this paper, numerical results from a non-linear dynamic response analysis of a 50 m long two-span...
This paper investigates seismic response of a realistic large dimension steel trussed arch structure...
Spatial variation of ground motion has significant effect on the earthquake response of structures t...
The aim of this study is to develop design criteria, which account for the effects of earthquakes sp...
This paper examines the impact of stochastic spatial variability of seismic ground motion on the sei...
The paper discusses the effects of seismic wave incoherency on the free-field and structural respons...
Four main factors may contribute to the spatial variation of earthquake excitations, i.e. coherency ...
During strong ground motion, it is expected that bridge structures are subjected to excitation that ...
Report No. CCEER 02-2This report focuses on analyzing the influence of three factors: geometric inco...