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Seismic Design and Performance Evaluation of Post-tensioned CLT Shear Walls Coupled with U-shaped Flexural Plates

  • 2025
  • OriginalPaper
  • Chapter
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Abstract

This chapter delves into the seismic design and performance evaluation of post-tensioned cross-laminated timber (CLT) shear walls coupled with U-shaped flexural plates (UFPs) in mass timber buildings. The study focuses on the structural responses and collapse capacity of 3-, 6-, and 9-storey buildings under the increased seismic hazards of Southwestern BC, Canada. Key topics include the lateral response of PT-CLT walls, the role of UFPs in energy dissipation, and the application of the direct displacement-based design (DDBD) approach. The research also involves the development and validation of fibre-based numerical models, as well as the conduct of nonlinear response history analyses (NLRHA) and incremental dynamic analyses (IDA). The findings indicate that the DDBD method produces designs that meet the target roof drift, and the collapse margin ratios (CMR) for the buildings are satisfactory compared to the suggested thresholds. Overall, the designed PT-CLT shear wall buildings exhibit good seismic performance and have the potential to be applied in high seismic-risk zones as primary seismic force-resisting systems.

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Title
Seismic Design and Performance Evaluation of Post-tensioned CLT Shear Walls Coupled with U-shaped Flexural Plates
Authors
Huanru Zhu
Matiyas A. Bezabeh
Asif Iqbal
Marjan Popovski
Zhiyong Chen
Copyright Year
2025
DOI
https://doi.org/10.1007/978-3-032-01078-0_12
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