@ARTICLE{Jin_Yongxu_Analysis_2023, author={Jin, Yongxu and Xu, Man and Jia, Jie}, volume={vol. 69}, number={No 3}, journal={Archives of Civil Engineering}, pages={645-663}, howpublished={online}, year={2023}, publisher={WARSAW UNIVERSITY OF TECHNOLOGY FACULTY OF CIVIL ENGINEERING and COMMITTEE FOR CIVIL ENGINEERING POLISH ACADEMY OF SCIENCES}, abstract={The self-centering buckling-restrained brace (SC-BRB) may achieve self-restoration for structures and, to a certain degree, diminish the substantial seismic residual deformation following rare earthquakes when compared to the usage of the conventional buckling-restrained brace (BRB). It may be possible to reduce the abrupt change in stiffness at the location of the strengthened stories and make the outrigger better at dissipating energy by improving the design of the energy-dissipation outrigger. This study compares the seismic performances of two types of energy-dissipation outriggers with BRB and SC-BRB web member designs during rare earthquakes so that the changes can be measured. The results show that using the SC-BRB web member design reduces the maximum inter-story drift ratio by an average of 7.68% and increases the average plastic-energy dissipation of the outrigger truss by 8.75%. The evaluation results showthat the SC-BRB outrigger truss structure has better structural regularity and energy-dissipation performance. It has the ability to efficiently regulate the structural seismic response and lessen primary-structure damage.}, type={Article}, title={Analysis of the seismic performances of structures reinforced by self-centering buckling-restrained braces}, URL={http://ochroma.man.poznan.pl/Content/128499/PDF/art40_int.pdf}, doi={10.24425/ace.2023.146103}, keywords={super-high raise building, self-centering buckling-restrained brace, outrigger truss, energy dissipation}, }