Seismic drift demands in multi-storey cross-laminated timber buildings
File(s)EESD_CLT_drifts.pdf (1.86 MB)
Accepted version
Author(s)
Demirci, C
Malaga Chuquitaype, C
Macorini, L
Type
Journal Article
Abstract
This paper investigates the seismic response of multi-storey cross-laminated timber (CLT) buildings and its relationship with salient ground-motion and building characteristics. Attention is given to the effects of earthquake frequency content on the inelastic deformation demands of platform CLT walled structures. The response of a set of 60 CLT buildings of varying number of storeys and panel fragmentation levels representative of a wide range of structural configurations subjected to 1656 real earthquake records is examined. It is shown that, besides salient structural parameters like panel aspect ratio, design behaviour factor and density of joints, the frequency content of the earthquake action as characterised by its mean period has a paramount importance on the level of nonlinear deformations attained by CLT structures. Moreover, the evolution of drifts as a function of building to ground-motion periods ratio is different for low and high-rise buildings. Accordingly, nonlinear regression models are developed for estimating the global and inter-storey drifts demands on multi- storey CLT buildings. Finally, the significance of the results is highlighted with reference to European seismic design procedures and recent assessment proposals.
Date Issued
2017-12-28
Date Acceptance
2017-10-25
Citation
Earthquake Engineering and Structural Dynamics, 2017, 47 (4), pp.1014-1031
ISSN
0098-8847
Publisher
Wiley
Start Page
1014
End Page
1031
Journal / Book Title
Earthquake Engineering and Structural Dynamics
Volume
47
Issue
4
Copyright Statement
© 2017 John Wiley & Sons, Ltd. This is the pre-peer reviewed version of the following article, which has been published in final form at https://onlinelibrary.wiley.com/doi/abs/10.1002/eqe.3003
Subjects
Science & Technology
Technology
Engineering, Civil
Engineering, Geological
Engineering
cross-laminated timber
inelastic drift demands
ground-motion frequency content
mean period
tall timber buildings
EARTHQUAKE GROUND MOTIONS
CLT STRUCTURES
SIMULATION
DESIGN
0905 Civil Engineering
Strategic, Defence & Security Studies
Publication Status
Published