Design of cross-laminated timber (CLT) floors for human-induced vibrations
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Cross-laminated timber (CLT) is an innovative engineering wood product made by gluing layers of solid timber boards placed in an orthogonally alternating orientation to the neighbouring layers. CLT panels provide an efficient solution for floors in single- and multi-storey buildings. Due to their light weight and often long-span, the design of these floors is generally governed by serviceability limit state criteria, that is, deflection or vibration limits. Vibrations induced by dynamic actions, such as people walking and their everyday activities, cannot result in structural failure but may cause discomfort to occupants if vibrations are not properly controlled. This paper gives an overview of some available methods for the vibration serviceability design of residential CLT floors. Differences between these methods are discussed through the consideration of criteria and their limit values. Although some criteria are common to certain methods, it may happen that the same criteria take ...into account different factors. In order to get a better description of the actual behaviour of floor structure, certain classifications of floors based on vibration serviceability performance were introduced in design methods.
Кључне речи:
CLT floor / vibrations / walking excitation / design method / serviceabilityИзвор:
Building Materials and Structures, 2023, 66 (2023) 69-78Издавач:
- Society for Materials and Structures Testing of Serbia
- University of Belgrade Faculty of Civil Engineering
- Association of Structural Engineers of Serbia
Финансирање / пројекти:
- Substrate4CLT - Towards Sustainable Buildings: Novel Strategies for the Design of Vibration Resistant Cross-Laminated Timber Floors (RS-ScienceFundRS-Ideje-7677448)
Институција/група
GraFarTY - JOUR AU - Simović, Nađa AU - Glišović, Ivan AU - Todorović, Marija PY - 2023 UR - https://grafar.grf.bg.ac.rs/handle/123456789/3049 AB - Cross-laminated timber (CLT) is an innovative engineering wood product made by gluing layers of solid timber boards placed in an orthogonally alternating orientation to the neighbouring layers. CLT panels provide an efficient solution for floors in single- and multi-storey buildings. Due to their light weight and often long-span, the design of these floors is generally governed by serviceability limit state criteria, that is, deflection or vibration limits. Vibrations induced by dynamic actions, such as people walking and their everyday activities, cannot result in structural failure but may cause discomfort to occupants if vibrations are not properly controlled. This paper gives an overview of some available methods for the vibration serviceability design of residential CLT floors. Differences between these methods are discussed through the consideration of criteria and their limit values. Although some criteria are common to certain methods, it may happen that the same criteria take into account different factors. In order to get a better description of the actual behaviour of floor structure, certain classifications of floors based on vibration serviceability performance were introduced in design methods. PB - Society for Materials and Structures Testing of Serbia PB - University of Belgrade Faculty of Civil Engineering PB - Association of Structural Engineers of Serbia T2 - Building Materials and Structures T1 - Design of cross-laminated timber (CLT) floors for human-induced vibrations VL - 66 (2023) 69-78 DO - 10.5937/GRMK2301069S ER -
@article{ author = "Simović, Nađa and Glišović, Ivan and Todorović, Marija", year = "2023", abstract = "Cross-laminated timber (CLT) is an innovative engineering wood product made by gluing layers of solid timber boards placed in an orthogonally alternating orientation to the neighbouring layers. CLT panels provide an efficient solution for floors in single- and multi-storey buildings. Due to their light weight and often long-span, the design of these floors is generally governed by serviceability limit state criteria, that is, deflection or vibration limits. Vibrations induced by dynamic actions, such as people walking and their everyday activities, cannot result in structural failure but may cause discomfort to occupants if vibrations are not properly controlled. This paper gives an overview of some available methods for the vibration serviceability design of residential CLT floors. Differences between these methods are discussed through the consideration of criteria and their limit values. Although some criteria are common to certain methods, it may happen that the same criteria take into account different factors. In order to get a better description of the actual behaviour of floor structure, certain classifications of floors based on vibration serviceability performance were introduced in design methods.", publisher = "Society for Materials and Structures Testing of Serbia, University of Belgrade Faculty of Civil Engineering, Association of Structural Engineers of Serbia", journal = "Building Materials and Structures", title = "Design of cross-laminated timber (CLT) floors for human-induced vibrations", volume = "66 (2023) 69-78", doi = "10.5937/GRMK2301069S" }
Simović, N., Glišović, I.,& Todorović, M.. (2023). Design of cross-laminated timber (CLT) floors for human-induced vibrations. in Building Materials and Structures Society for Materials and Structures Testing of Serbia., 66 (2023) 69-78. https://doi.org/10.5937/GRMK2301069S
Simović N, Glišović I, Todorović M. Design of cross-laminated timber (CLT) floors for human-induced vibrations. in Building Materials and Structures. 2023;66 (2023) 69-78. doi:10.5937/GRMK2301069S .
Simović, Nađa, Glišović, Ivan, Todorović, Marija, "Design of cross-laminated timber (CLT) floors for human-induced vibrations" in Building Materials and Structures, 66 (2023) 69-78 (2023), https://doi.org/10.5937/GRMK2301069S . .