Publication | Open Access
Base Pounding Model and Response Analysis of Base-Isolated Structures under Earthquake Excitation
33
Citations
28
References
2017
Year
EngineeringMechanical EngineeringResponse AnalysisStructural SystemStructural EngineeringBase Pounding ModelSeismic ResponseSeismic AnalysisStructural DynamicEarthquake ExcitationStructural VibrationGround MotionEarthquake EngineeringStructural Health MonitoringSeismologyCivil EngineeringSeismic IsolationGeomechanicsBase PoundingEarthquake ExcitationsStructural MechanicsVibration ControlConstruction Engineering
In order to study the base pounding effects of base-isolated structure under earthquake excitations, a base pounding theoretical model with a linear spring-gap element is proposed. A finite element analysis program is used in numerical simulation of seismic response of based-isolated structure when considering base pounding. The effects of the structure pounding against adjacent structures are studied, and the seismic response of a base-isolated structure with lead-rubber bearing and a base-isolated structure with friction pendulum isolation bearing are analyzed. The results indicate that: the model offers much flexibility to analyze base pounding effects. There is a most clearance unfavorable width between adjacent structures. The structural response increases with pounding. Significant amplification of the story shear-force, velocity, and acceleration were observed. Increasing the number of stories in a building leads to an initial increase in impact force, followed by a decrease in such force. As a result, it is necessary to consider base pounding in the seismic design of base-isolated structures.
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