Analytical Approach to Establishing the Elastic Behavior of Multipanel CLT Shear Walls Subjected to Lateral Loads
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作者:
Casagrande, Daniele
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Natl Res Council Italy CNR IVALSA, Trees & Timber Inst, Via Biasi 75, I-38010 San Michele All Adige, ItalyNatl Res Council Italy CNR IVALSA, Trees & Timber Inst, Via Biasi 75, I-38010 San Michele All Adige, Italy
Casagrande, Daniele
[1
]
Doudak, Ghasan
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Univ Ottawa, Dept Civil Engn, Ottawa, ON K1N 6N5, CanadaNatl Res Council Italy CNR IVALSA, Trees & Timber Inst, Via Biasi 75, I-38010 San Michele All Adige, Italy
Doudak, Ghasan
[2
]
Mauro, Luigi
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Univ Trento, Dept Civil Environm & Mech Engn, I-38122 Trento, ItalyNatl Res Council Italy CNR IVALSA, Trees & Timber Inst, Via Biasi 75, I-38010 San Michele All Adige, Italy
Mauro, Luigi
[3
]
Polastri, Andrea
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Natl Res Council Italy CNR IVALSA, Trees & Timber Inst, Via Biasi 75, I-38010 San Michele All Adige, ItalyNatl Res Council Italy CNR IVALSA, Trees & Timber Inst, Via Biasi 75, I-38010 San Michele All Adige, Italy
Polastri, Andrea
[1
]
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[1] Natl Res Council Italy CNR IVALSA, Trees & Timber Inst, Via Biasi 75, I-38010 San Michele All Adige, Italy
Structures assembled with cross-laminated timber (CLT) panels, and designed to resist gravity and lateral loads, are being considered as viable options for low-rise to mid-rise buildings. In this paper, an analytical approach based on the minimum total potential energy principle has been developed in order to determine the mechanical behavior of 1-story multipanel CLT walls. Expressions for determination of the elastic stiffness and capacity are proposed that take into account the geometry of the panels and stiffness of hold-down and vertical joint connections. Kinematic models demonstrated in the case of relatively stiff hold-down connections that each panel has an absolute center of rotation, whereas for relatively flexible hold-down connections panels can exhibit progressively increasing uplift. An analytical expression to evaluate the elastic strength of an entire wall is presented for different kinematic cases. Results are verified by comparing them with predictions made using detailed numerical models.
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[21]
SCHICKHOFER G., 2013, Focus Solid Timber Solutions - European Conference on Cross Laminated Timber (CLT), P152
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Univ New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, CanadaUniv New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, Canada
Zhou, Qinyi
Gong, Meng
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Univ New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, CanadaUniv New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, Canada
Gong, Meng
Chui, Ying Hei
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Univ New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, CanadaUniv New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, Canada
Chui, Ying Hei
Mohammad, Mohammad
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FPInnovations, Ottawa, ON, CanadaUniv New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, Canada
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Univ New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, CanadaUniv New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, Canada
Zhou, Qinyi
Gong, Meng
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Univ New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, CanadaUniv New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, Canada
Gong, Meng
Chui, Ying Hei
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Univ New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, CanadaUniv New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, Canada
Chui, Ying Hei
Mohammad, Mohammad
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FPInnovations, Ottawa, ON, CanadaUniv New Brunswick, Fac Forestry & Environm Management, Fredericton, NB E3B 5A3, Canada