The research work presented herein deals with the analysis of light-frame wood (LFW) buildings under lateral seismic loading. The paper aim was to define the relationship between the global building ductility and the local ductility of the components via non-linear static analyses. Firstly, the different failure mechanisms were isolated and their influence over the building ductility was determined by focusing on single-storey buildings. Then, the study was extended to multi-storey buildings in order to evaluate how the number of storeys affects the ductility. In order to obtain results of general validity, the analyses were performed by varying the most relevant mechanical-geometrical parameters as well as the seismic input and the ductility of the base components.

Evaluation of the displacement ductility for the seismic design of light-frame wood buildings

Casagrande D;
2019

Abstract

The research work presented herein deals with the analysis of light-frame wood (LFW) buildings under lateral seismic loading. The paper aim was to define the relationship between the global building ductility and the local ductility of the components via non-linear static analyses. Firstly, the different failure mechanisms were isolated and their influence over the building ductility was determined by focusing on single-storey buildings. Then, the study was extended to multi-storey buildings in order to evaluate how the number of storeys affects the ductility. In order to obtain results of general validity, the analyses were performed by varying the most relevant mechanical-geometrical parameters as well as the seismic input and the ductility of the base components.
2019
Istituto per la Valorizzazione del Legno e delle Specie Arboree - IVALSA - Sede Sesto Fiorentino
Light-frame wood buildings
Seismic analysis
Displacement ductility
Behaviour factor
Timber buildings
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/362060
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