IJSEA Volume 10 Issue 12

Earthquake Performance Analysis of Steel Structures with A3 Plan Irregularities

Özlem Çavdar
10.7753/IJSEA1012.1001
keywords : Steel structures, nonlinear static pushover analysis, performance analysis, plan irregularity, A3 type irregularity

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In earthquake engineering, a performance-based design method is used to determine the level of the expected performance of the structures under the earthquake effect. The level of performance is related to the damage situation that could be occurred in the structure after the earthquake. In the performance-based structural design, it is predicted that more than one damage levels emerge under one certain earthquake effect. In this study, the seismic behavior of steel structures with plan irregularities in the Turkey Building Earthquake Code in the 2018 (TBEC-2018) is investigated by the nonlinear static analysis methods. The selected steel structures are located in ?zmir, Turkey. The Turkey Earthquake Code in 2018 is considered for assessing seismic performance evaluation of the selected moment-resisting frame steel building. Four different A3 type irregularity was investigated. The steel building with no irregularity in its plan. was selected as the structure of the reference. The performance goals of the five different steel structures are evaluated by applying the pushover and procedures of the TBEC-2018. The steel structures were compared by obtaining pushover curves for both the X and Y directions. The results show that the effects of A3 type irregularity should be not considered in design and buildings without irregularities are safer.
@artical{Ã10122021ijsea10121001,
Title = "Earthquake Performance Analysis of Steel Structures with A3 Plan Irregularities",
Journal ="International Journal of Science and Engineering Applications (IJSEA)",
Volume = "10",
Issue ="12",
Pages ="174 - 179",
Year = "2021",
Authors ="Özlem Çavdar"}