Shaking table testing of post-tensioned timber frame building with passive energy dissipation systems

被引:38
|
作者
Di Cesare, Antonio [1 ]
Ponzo, Felice Carlo [1 ]
Nigro, Domenico [1 ]
Pampanin, Stefano [2 ]
Smith, Tobias [2 ]
机构
[1] Univ Basilicata, Sch Engn, Potenza, Italy
[2] Univ Canterbury, Dept Civil & Nat Resources Engn, Christchurch, New Zealand
关键词
Shaking table testing; Post-tensioned timber frame; Pres-Lam; Glued laminated timber; Hysteretic dissipative devices; Nonlinear analysis; CROSS-LAMINATED TIMBER;
D O I
10.1007/s10518-017-0115-9
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
A recently developed technology for the construction of multi-storey timber buildings called Pres-Lam uses long lengths of prefabricated laminated timber connected together using pre-stressing steel tendons or bars. A 3-dimensional, 3-storey, 2/3rd scaled Pres-Lam frame building was tested on the shaking table of the structural laboratory of the University of Basilicata. The main objectives of this study were: (1) to confirm the effectiveness of the Pres-Lam technology, originally developed using laminated veneer lumber, for glue laminated (Glulam) timber structures and (2) to validate the current modelling approach in predicting the dynamic response. This paper describes the design, detailing and construction of the experimental model followed by explanation of the testing programme. Two sessions of testing were performed considering different column-base conditions, both with and without the activation of externally mounted dissipative steel angles. The test results are compared with numerical predictions obtained through nonlinear analysis. These numerical models are shown to provide an accurate representation of the dynamic response.
引用
收藏
页码:4475 / 4498
页数:24
相关论文
共 50 条
  • [31] Cyclic testing of unbonded post-tensioned concrete wall systems with and without supplemental damping
    Twigden, K. M.
    Sritharan, S.
    Henry, R. S.
    [J]. ENGINEERING STRUCTURES, 2017, 140 : 406 - 420
  • [32] Evaluating the mechanical behavior of post-tensioned recombinant bamboo frame with metal energy-dissipating connections
    Su, Yi
    Zou, Jun
    Lu, Wei
    [J]. STRUCTURES, 2022, 46 : 459 - 470
  • [33] A DISPLACEMENT-BASED DESIGN METHODOLOGY DEVOTED TO POST-TENSIONED TIMBER WALLS FOR SEISMIC RETROFIT OF AN EXISTING RC BUILDING
    Sandoli, Antonio
    Calderoni, Bruno
    Prota, Andrea
    [J]. INGEGNERIA SISMICA, 2021, 38 (02): : 70 - 95
  • [34] Experimental Seismic Response of a Resilient 2-Story Mass-Timber Building with Post-Tensioned Rocking Walls
    Pei, Shiling
    van de Lindt, John W.
    Barbosa, Andre R.
    Berman, Jeffrey W.
    McDonnell, Eric
    Dolan, J. Daniel
    Blomgren, Hans-Erik
    Zimmerman, Reid B.
    Huang, Da
    Wichman, Sarah
    [J]. JOURNAL OF STRUCTURAL ENGINEERING, 2019, 145 (11)
  • [35] Seismic behaviour of a traditional timber structure: shaking table tests, energy dissipation mechanism and damage assessment model
    Xie, Qifang
    Wang, Long
    Zhang, Lipeng
    Hu, Weibing
    Zhou, Tiegang
    [J]. BULLETIN OF EARTHQUAKE ENGINEERING, 2019, 17 (03) : 1689 - 1714
  • [36] DISSIPATIVE BRACING SYSTEM FOR POST-TENSIONED TIMBER FRAMED BUILDINGS: EXPERIMENTAL TESTING OF U-SHAPE HYSTERETIC DAMPERS
    Di Cesare, Antonio
    Ponzo, Felice Carlo
    Lamarucciola, Nicla
    Nigro, Domenico
    Pampanin, Stefano
    [J]. INGEGNERIA SISMICA, 2019, 36 (03): : 38 - 54
  • [37] Seismic behaviour of a traditional timber structure: shaking table tests, energy dissipation mechanism and damage assessment model
    Qifang Xie
    Long Wang
    Lipeng Zhang
    Weibing Hu
    Tiegang Zhou
    [J]. Bulletin of Earthquake Engineering, 2019, 17 : 1689 - 1714
  • [38] Experimental Investigation of the Progressive Collapse of a Steel Special Moment-Resisting Frame and a Post-tensioned Energy-Dissipating Frame
    Tsitos, Antonios
    Mosqueda, Gilberto
    [J]. ROLE OF SEISMIC TESTING FACILITIES IN PERFORMANCE-BASED EARTHQUAKE ENGINEERING, 2012, 22 : 367 - 382
  • [39] Experimental testing of post-tensioned steel-timber hybrid frames equipped with energy-dissipating braces (vol 296,116960, 2023)
    Chen, Fei
    Li, Zheng
    Li, Minghao
    Shu, Zhan
    [J]. ENGINEERING STRUCTURES, 2024, 298
  • [40] Shaking table investigation of a low-cost and sustainable timber-based energy dissipation system with recentering ability
    Tsiavos, Anastasios
    Kolyfetis, Dimitrios
    Panzarasa, Guido
    Burgert, Ingo
    Stojadinovic, Bozidar
    [J]. BULLETIN OF EARTHQUAKE ENGINEERING, 2023, 21 (08) : 3949 - 3968