Faculty profile
Matiyas Bezabeh
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Research
Latest funding
- $30,000
A cloud-native e-analysis platform for response prediction of wind-excited tall mass-timber buildings
NSERC · 2025 · Principal investigator
- $120,000
Development of a novel performance-based auxiliary damping design framework for tall mass-timber buildings
NSERC · 2025 · Principal investigator
- $30,000
Probabilistic performance-based wind design (P-PBWD) frameworks for tall mass-timber buildings
NSERC · 2024 · Principal investigator
A cloud-native e-analysis platform for response prediction of wind-excited tall mass-timber buildings
Principal investigators: Bezabeh, Matiyas
Keywords: Structural engineering; Materials performance
Development of a novel performance-based auxiliary damping design framework for tall mass-timber buildings
Principal investigators: Bezabeh, Matiyas
Keywords: Structural engineering; Materials performance
Probabilistic performance-based wind design (P-PBWD) frameworks for tall mass-timber buildings
Principal investigators: Bezabeh, Matiyas MA
Keywords: cross laminated timber (clt); monte carlo sampling; nonlinear dynamic analysis; performance-based wind design; structural reliability analysis; tall buildings; tall mass timber buildings; timber structures; wind engineering; wind tunnel testing
Development of prescriptive seismic design procedures for post-tensioned rocking cross-laminated timber walls
Principal investigators: Bezabeh, Matiyas MA
Keywords: collapse risk; cross laminated timber (clt); earthquake engineering; mass timber; nonlinear dynamic analysis; performance-based seismic design; rocking timber walls; seismic design; structural analysis; timber structures
Resilient and Sustainable Tall Timber Construction: Designing for Earthquakes and Strong Winds using Performance-Based Approaches
Principal investigators: Bezabeh, Matiyas
Resilient and Sustainable Tall Timber Construction: Designing for Earthquakes and Strong Winds using Performance-Based Approaches
Principal investigators: Bezabeh, Matiyas
Keywords: timber structures; tall buildings; wind engineering; earthquake engineering; performance-based wind design; performance-based seismic design; tall mass-timber buildings; cross laminated timber (clt); wind tunnel testing; nonlinear dynamic analysis
Next-generation wood construction
Principal investigators: Chui, Ying-Hei YH
Keywords: fire safety of buildings; life cycle assessment; mass timber; net-zero energy design; off-site construction; performance-based design; resilient structures; sustainable building; timber buildings
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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