JOURNAL ARTICLE

Seismic Performance Evaluation for Steel Reinforced Concrete Frame Structures

Qiu Wei WangQingxuan ShiLiu Jiu Tang

Year: 2011 Journal:   Advanced materials research Vol: 255-260 Pages: 2421-2425   Publisher: Trans Tech Publications

Abstract

The randomness and uncertainty of seismic demand and structural capacity are considered in demand-capacity factor method (DCFM) which could give confidence level of different performance objectives. Evaluation steps of investigating seismic performance of steel reinforced concrete structures with DCFM are put forward, and factors in calculation formula are modified based on stress characteristics of SRC structures. A regular steel reinforced concrete frame structure is analyzed and the reliability level satisfying four seismic fortification targets are calculated. The evaluation results of static and dynamic nonlinear analysis are compared which indicates that the SRC frame has better seismic performance and incremental dynamic analysis could reflect more dynamic characteristics of structures than pushover method.

Keywords:
Structural engineering Randomness Frame (networking) Incremental Dynamic Analysis Reliability (semiconductor) Reinforced concrete Nonlinear system Computer science Engineering Geotechnical engineering Seismic analysis Mathematics Statistics

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Citation History

Topics

Simulation and Modeling Applications
Physical Sciences →  Engineering →  Control and Systems Engineering
Civil and Geotechnical Engineering Research
Physical Sciences →  Engineering →  General Engineering
Evaluation Methods in Various Fields
Physical Sciences →  Environmental Science →  Ecological Modeling

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