This paper presents a unified approach on determination of the effective stress range based on equivalent law of strain energy and fatigue damage model, so as to provide an efficient approach for accurately assessing effective fatigue stress of existing bridge under traffic loading. A new theoretical framework to relate variable- and constant-amplitude fatigue is proposed in this paper. Different formulation for calculating effective stress range can be derived by the proposed theory, which include the effective stress range by the root mean square, by Miner's law and a new effective stress range based on the nonlinear fatigue damage model. Comparison of the theoretical results of fatigue damage under the effective stress range of the varia...
Influenced by repeated effects of vehicle loads during an operation period, a bridge structure will ...
By using a three dimensional FEM model of Tsing-Ma Bridge, the dynamic response to traffic loading i...
Conference Name:2012 International Conference on Civil, Architectural and Hydraulic Engineering, ICC...
The methodology and strategy for evaluating fatigue damage and possible critical locations of local ...
Based on the real-time monitoring data, a fatigue damage model using continuous damage mechanics and...
This paper is a continuation of the paper titled "FATIGUE ANALYSIS AND LIFE PREDICTION OF BRIDGES WI...
An effective approach for fatigue analysis of bridge-deck sections under traffic loading is proposed...
This paper is a continuation of the paper titled "FATIGUE ANALYSIS AND LIFE PREDICTION OF BRIDGES WI...
This paper studies the effects of load sequence and interaction, and overloading effect on the fatig...
This paper studies the effects of load sequence and interaction, and overloading effect on the fatig...
Usually, to estimate the fatigue life of structural details in existing bridges, fatigue damage asse...
A structural health assessment (SHA) methodology is developed using data acquired from structural he...
Conference on Health Monitoring and Management of Civil Infrastructure Systems, Newport Beach, USA, ...
Fatigue assessment for the Tsing Ma Bridge (TMB) are presented based on the British standard BS5400 ...
This paper is aimed at developing a methodology and strategy for fatigue damage assessment and life ...
Influenced by repeated effects of vehicle loads during an operation period, a bridge structure will ...
By using a three dimensional FEM model of Tsing-Ma Bridge, the dynamic response to traffic loading i...
Conference Name:2012 International Conference on Civil, Architectural and Hydraulic Engineering, ICC...
The methodology and strategy for evaluating fatigue damage and possible critical locations of local ...
Based on the real-time monitoring data, a fatigue damage model using continuous damage mechanics and...
This paper is a continuation of the paper titled "FATIGUE ANALYSIS AND LIFE PREDICTION OF BRIDGES WI...
An effective approach for fatigue analysis of bridge-deck sections under traffic loading is proposed...
This paper is a continuation of the paper titled "FATIGUE ANALYSIS AND LIFE PREDICTION OF BRIDGES WI...
This paper studies the effects of load sequence and interaction, and overloading effect on the fatig...
This paper studies the effects of load sequence and interaction, and overloading effect on the fatig...
Usually, to estimate the fatigue life of structural details in existing bridges, fatigue damage asse...
A structural health assessment (SHA) methodology is developed using data acquired from structural he...
Conference on Health Monitoring and Management of Civil Infrastructure Systems, Newport Beach, USA, ...
Fatigue assessment for the Tsing Ma Bridge (TMB) are presented based on the British standard BS5400 ...
This paper is aimed at developing a methodology and strategy for fatigue damage assessment and life ...
Influenced by repeated effects of vehicle loads during an operation period, a bridge structure will ...
By using a three dimensional FEM model of Tsing-Ma Bridge, the dynamic response to traffic loading i...
Conference Name:2012 International Conference on Civil, Architectural and Hydraulic Engineering, ICC...