Seismic tests have been conducted on two 3-storey structures protected with pressurized fluidviscous sring damper devices. One of the structures was a reinforced concrete frame with clay elements in the slabs, while the other one was a steel frame with steel/concrete composite slabs. The spring dampers were installed through K bracing between the floors. The tests were performed by means of the pseudodynamic method, which allowed the use of large and full-size speciments, ad by implementing a specific compensation strategy for the strain-rate effect at the devices. The test results allowed the verification of the adequacy of the attachment system as well as the comparison of the behaviour of the unprotected buildings with several protected configurations, showing the benefits of the application of the devices and the characteristics of their performance. The response of the protected structures was always safer than that of the unprotected ones mainly due to a significant increase of equivalent damping. The increase in the damping ratio depends on the level of deformation.

Seismic tests on reinforced concrete and steel frames retrofitted with damped braces / Molina, F.J; Sorace, S; Terenzi, G; Magonette, G; Viaccoz, B. - In: EARTHQUAKE ENGINEERING AND STRUCTURAL DYNAMICS. - ISSN 1096-9845. - STAMPA. - 33(11):(2004), pp. 1373-1394. [10.1002/eqe.408]

Seismic tests on reinforced concrete and steel frames retrofitted with damped braces

TERENZI, GLORIA;
2004

Abstract

Seismic tests have been conducted on two 3-storey structures protected with pressurized fluidviscous sring damper devices. One of the structures was a reinforced concrete frame with clay elements in the slabs, while the other one was a steel frame with steel/concrete composite slabs. The spring dampers were installed through K bracing between the floors. The tests were performed by means of the pseudodynamic method, which allowed the use of large and full-size speciments, ad by implementing a specific compensation strategy for the strain-rate effect at the devices. The test results allowed the verification of the adequacy of the attachment system as well as the comparison of the behaviour of the unprotected buildings with several protected configurations, showing the benefits of the application of the devices and the characteristics of their performance. The response of the protected structures was always safer than that of the unprotected ones mainly due to a significant increase of equivalent damping. The increase in the damping ratio depends on the level of deformation.
2004
33(11)
1373
1394
Molina, F.J; Sorace, S; Terenzi, G; Magonette, G; Viaccoz, B
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/10439
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