The effects of irregularity in elevation of cross-laminated timber buildings have not been fully analysed in literature to provide useful information for the design. In this work, a number of building configurations, regular or irregular in elevation, characterized by a different arrangement per storey of the floor–wall joints have been analysed by means of non-linear dynamic analyses. Comparative results in terms of ratio between the behaviour q-factor of the investigated irregular configurations and that of reference regular ones, show that less dissipative capacity can be expected if the building is irregular due to a disequilibrium among storeys between the actual and the required strength provided by the floor–wall joints. A correlation method to estimate the behaviour q-factor for perfectly regular cross-laminated timber buildings is here presented and extended to in-elevation irregular ones. A new empirical formulation to assess the reliable corrective factor accounting for the irregularity in elevation of cross-laminated timber buildings, according to Eurocode 8 provisions, is also proposed. A final discussion about the implications of in elevation irregularity on the building design is reported.

Trutalli D., Pozza L. (2018). Seismic design of floor–wall joints of multi-storey CLT buildings to comply with regularity in elevation. BULLETIN OF EARTHQUAKE ENGINEERING, 16(1), 183-201 [10.1007/s10518-017-0193-8].

Seismic design of floor–wall joints of multi-storey CLT buildings to comply with regularity in elevation

Pozza L.
2018

Abstract

The effects of irregularity in elevation of cross-laminated timber buildings have not been fully analysed in literature to provide useful information for the design. In this work, a number of building configurations, regular or irregular in elevation, characterized by a different arrangement per storey of the floor–wall joints have been analysed by means of non-linear dynamic analyses. Comparative results in terms of ratio between the behaviour q-factor of the investigated irregular configurations and that of reference regular ones, show that less dissipative capacity can be expected if the building is irregular due to a disequilibrium among storeys between the actual and the required strength provided by the floor–wall joints. A correlation method to estimate the behaviour q-factor for perfectly regular cross-laminated timber buildings is here presented and extended to in-elevation irregular ones. A new empirical formulation to assess the reliable corrective factor accounting for the irregularity in elevation of cross-laminated timber buildings, according to Eurocode 8 provisions, is also proposed. A final discussion about the implications of in elevation irregularity on the building design is reported.
2018
Trutalli D., Pozza L. (2018). Seismic design of floor–wall joints of multi-storey CLT buildings to comply with regularity in elevation. BULLETIN OF EARTHQUAKE ENGINEERING, 16(1), 183-201 [10.1007/s10518-017-0193-8].
Trutalli D.; Pozza L.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/731056
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