This paper describes the main results of shaking table testing performed on a post-tensioned timber frame building equipped with an advanced damping system. This experimental campaign, carried out in the structural laboratory of the University of Basilicata in Potenza, Italy, is part of a series of experimental tests in collaboration with the University of Canterbury in Christchurch, New Zealand. The specimen is 3-dimensional, 3-storey, 2/3rd scale and is made by using post-tensioned timber frames in both directions. During the testing programme, the specimen was tested both with and without the addition of dissipative steel angle reinforcing which was designed to yield at a certain level of drift. These steel angles release energy through hysteresis during seismic loading, thus increasing damping. This paper discusses the main results of the experimental testing and presents comparisons with numerical outcomes using two non-linear finite element codes: SAP2000 and RUAUMOKO.

Shaking Table Testing of a Multi-Storey Post-tensioned Timber Building equipped with Advanced Damping System

PONZO, Felice Carlo;DI CESARE, ANTONIO;SIMONETTI, MICHELE MASSIMO;NIGRO, Domenico Salvatore;
2015-01-01

Abstract

This paper describes the main results of shaking table testing performed on a post-tensioned timber frame building equipped with an advanced damping system. This experimental campaign, carried out in the structural laboratory of the University of Basilicata in Potenza, Italy, is part of a series of experimental tests in collaboration with the University of Canterbury in Christchurch, New Zealand. The specimen is 3-dimensional, 3-storey, 2/3rd scale and is made by using post-tensioned timber frames in both directions. During the testing programme, the specimen was tested both with and without the addition of dissipative steel angle reinforcing which was designed to yield at a certain level of drift. These steel angles release energy through hysteresis during seismic loading, thus increasing damping. This paper discusses the main results of the experimental testing and presents comparisons with numerical outcomes using two non-linear finite element codes: SAP2000 and RUAUMOKO.
2015
978-1-61804-275-0
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11563/111921
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