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A Performance-Based Design Method for Coupled Wall Structures
A performance-based design (PBD) approach for coupled wall structures (CWSs) is presented to address the issues associated with the current strength-based design procedure. The design procedure consists of three primary elements, i.e., selection of performance objectives, determination of design base shears, and implementation of plastic design. The efficiency of the proposed PBD method is evaluated using four example structures. The results indicate that the proposed method is able to generate a CWS showing predictable seismic behavior under multiple seismic hazard levels. This design method also efficiently improves the global yielding mechanism of CWSs compared to the current design guidelines.
A Performance-Based Design Method for Coupled Wall Structures
A performance-based design (PBD) approach for coupled wall structures (CWSs) is presented to address the issues associated with the current strength-based design procedure. The design procedure consists of three primary elements, i.e., selection of performance objectives, determination of design base shears, and implementation of plastic design. The efficiency of the proposed PBD method is evaluated using four example structures. The results indicate that the proposed method is able to generate a CWS showing predictable seismic behavior under multiple seismic hazard levels. This design method also efficiently improves the global yielding mechanism of CWSs compared to the current design guidelines.
A Performance-Based Design Method for Coupled Wall Structures
Hung, Chung-Chan (author) / Lu, Wei-Ting
2017
Article (Journal)
English
Seismic Behavior , Design , Efficiency , Seismic Design , Seismic hazard , Coupled Walls , Seismic design , Shears , Design improvements , Hazards , Nonlinear Analysis , Earthquake engineering , Seismic engineering , Strength , Coupled walls , Structures , Seismic activity , Structural engineering , Plasticity , Methodology , Plastics , Concrete Structures , Seismic response
A Performance-Based Design Method for Coupled Wall Structures
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