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Seismic Response of Torsionally Coupled System with Semi-Active Variable Dampers
The seismic response of single-story, one-way asymmetric building with semi-active variable dampers with two-step viscous damping algorithm is investigated. The response is obtained by numerically solving the governing equations of motion. The effects of superstructure eccentricity ratio, uncoupled time period, and uncoupled torsional to lateral frequency ratio are investigated on peak responses of lateral, torsional, and edge displacements and accelerations, as well as damper forces. It is found that the semi-active dampers reduce the lateral-torsional deformations significantly and effects of torsional coupling on effectiveness of control system are more sensitive to variation of eccentricity and torsional to lateral frequency ratio.
Seismic Response of Torsionally Coupled System with Semi-Active Variable Dampers
The seismic response of single-story, one-way asymmetric building with semi-active variable dampers with two-step viscous damping algorithm is investigated. The response is obtained by numerically solving the governing equations of motion. The effects of superstructure eccentricity ratio, uncoupled time period, and uncoupled torsional to lateral frequency ratio are investigated on peak responses of lateral, torsional, and edge displacements and accelerations, as well as damper forces. It is found that the semi-active dampers reduce the lateral-torsional deformations significantly and effects of torsional coupling on effectiveness of control system are more sensitive to variation of eccentricity and torsional to lateral frequency ratio.
Seismic Response of Torsionally Coupled System with Semi-Active Variable Dampers
Mevada, Snehal V. (author) / Jangid, R. S. (author)
Journal of Earthquake Engineering ; 16 ; 1043-1054
2012-10-01
12 pages
Article (Journal)
Electronic Resource
English
Seismic Response of Torsionally Coupled System with Semi-Active Variable Dampers
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