Two methods have been reported by Zhu and Law to identify moving loads on the top of a bridge deck. One is based on the exact solution (ESM) and the other is based on the finite element formulation (FEM). Simulation studies on the effect of different influencing factors have been reported previously. This paper comparatively studies the performances of these two methods with experimental measurements obtained from a bridge/vehicle system in the laboratory. The strains of the bridge deck are measured when a model car moves across the bridge deck along different paths. The moving loads on the bridge deck are identified from the measured strains using these two methods, and the responses are reconstructed from the identified loads for comparis...
The objective of this paper is to identify moving multi-axle loads on bridges with the moving force ...
Dynamic load data have been Valuable for bridge and pavement design. Traditional ways to acquire tru...
A modified 2-D Moses algorithm for acquiring the field-calibrated influence line (IL) of an existing...
Existing methods on moving force identification are usually based on modal decomposition and are sub...
A method is presented to identify moving loads on a bridge deck modelled as an orthotropic rectangul...
A new identification methodology for dynamic axle loads using the superposition principle and influe...
Identification of moving loads on bridges is an important inverse problem in the civil and structura...
Laboratory study on the identification of moving vehicle axle loads on a multi-span continuous bridg...
Different aspects of dynamic identification of moving loads from a vehicle traveling on top of a bea...
Traditional ways to acquire information on truck axle and gross weight are expensive and subject to ...
Field measurements were carried out for a moving force identification study using an existing prestr...
Force identification from dynamic responses of bridges is an important inverse problem. The paramete...
Two types of dynamic testing load for bridges - driving sprung mass and driving impulse load - areex...
This paper describes an experimental study on the identification of moving vehicle axle loads on a c...
Both the time domain method (TDM) and frequency-time domain method (FTDM) are introduced and modifie...
The objective of this paper is to identify moving multi-axle loads on bridges with the moving force ...
Dynamic load data have been Valuable for bridge and pavement design. Traditional ways to acquire tru...
A modified 2-D Moses algorithm for acquiring the field-calibrated influence line (IL) of an existing...
Existing methods on moving force identification are usually based on modal decomposition and are sub...
A method is presented to identify moving loads on a bridge deck modelled as an orthotropic rectangul...
A new identification methodology for dynamic axle loads using the superposition principle and influe...
Identification of moving loads on bridges is an important inverse problem in the civil and structura...
Laboratory study on the identification of moving vehicle axle loads on a multi-span continuous bridg...
Different aspects of dynamic identification of moving loads from a vehicle traveling on top of a bea...
Traditional ways to acquire information on truck axle and gross weight are expensive and subject to ...
Field measurements were carried out for a moving force identification study using an existing prestr...
Force identification from dynamic responses of bridges is an important inverse problem. The paramete...
Two types of dynamic testing load for bridges - driving sprung mass and driving impulse load - areex...
This paper describes an experimental study on the identification of moving vehicle axle loads on a c...
Both the time domain method (TDM) and frequency-time domain method (FTDM) are introduced and modifie...
The objective of this paper is to identify moving multi-axle loads on bridges with the moving force ...
Dynamic load data have been Valuable for bridge and pavement design. Traditional ways to acquire tru...
A modified 2-D Moses algorithm for acquiring the field-calibrated influence line (IL) of an existing...