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Dynamic Response of Tall Timber Buildings Under Service Load : The DynaTTB Research Program

Abrahamsen, Rune (author)
Moelven Limtre, Norway
Bjertnaes, Magne A. (author)
Sweco, Norway
Bouillot, Jacques (author)
Eiffage, France
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Brank, Bostjan (author)
University of Ljubljana, Slovenia
Cabaton, Lionel (author)
Arbonis, France
Crocetti, Roberto (author)
Moelven, Sweden
Flamand, Olivier (author)
CSTB, France
Garains, Fabien (author)
Eiffage, France
Gavric, Igor (author)
InnoRenew, Slovenia
Germain, Olivier (author)
Galeo, France
Hahusseau, Ludwig (author)
Eiffage, France
Hameury, Stephane (author)
CSTB, France
Johansson, Marie (author)
RISE,Bygg och fastighet,RISE, Sweden
Johansson, Thomas (author)
Moelven, Sweden
Ao, Wai Kei (author)
University of Exeter, United Kingdom
Kurent, Blaz (author)
University of Ljubljana, Slovenia
Landel, Pierre (author)
RISE,Bygg och fastighet,RISE, Sweden
Linderholt, Andreas, 1968- (author)
Linnéuniversitetet,Institutionen för maskinteknik (MT),Avancerade material,Linnaeus University, Sweden
Malo, Kjell (author)
NTNU Norwegian University of Science and Technology, Norway
Manthey, Manuel (author)
CSTB, France
Nåvik, Petter (author)
Sweco, Norway
Pavic, Alex (author)
University of Exeter, United Kingdom
Perez, Fernando (author)
Smith and Wallwork, UK,Smith and Wallwork, United Kingdom
Rönnquist, Anders (author)
NTNU Norwegian University of Science and Technology, Norway
Stamatopoulos, Haris (author)
NTNU Norwegian University of Science and Technology, Norway
Sustersic, Iztok (author)
InnoRenew, Slovenia
Tulebekova, Salue (author)
NTNU Norwegian University of Science and Technology, Norway
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 (creator_code:org_t)
National Technical University of Athens, 2020
2020
English.
In: EURODYN 2020, XI international conferece on structural dynamics. - : National Technical University of Athens. - 9786188507210 ; , s. 4900-4910
  • Conference paper (peer-reviewed)
Abstract Subject headings
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  • Wind-induced dynamic excitation is becoming a governing design action determin-ing size and shape of modern Tall Timber Buildings (TTBs). The wind actions generate dynamic loading, causing discomfort or annoyance for occupants due to the perceived horizontal sway – i.e. vibration serviceability failure. Although some TTBs have been instrumented and meas-ured to estimate their key dynamic properties (natural frequencies and damping), no systematic evaluation of dynamic performance pertinent to wind loading has been performed for the new and evolving construction technology used in TTBs. The DynaTTB project, funded by the Forest Value research program, mixes on site measurements on existing buildings excited by heavy shakers, for identification of the structural system, with laboratory identification of building elements mechanical features coupled with numerical modelling of timber structures. The goal is to identify and quantify the causes of vibration energy dissipation in modern TTBs and pro-vide key elements to FE modelers.The first building, from a list of 8, was modelled and tested at full scale in December 2019. Some results are presented in this paper. Four other buildings will be modelled and tested in spring 2020.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Samhällsbyggnadsteknik -- Husbyggnad (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Civil Engineering -- Building Technologies (hsv//eng)
TEKNIK OCH TEKNOLOGIER  -- Samhällsbyggnadsteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Civil Engineering (hsv//eng)

Keyword

timber building
wind load
discomfort
modelling
damping
full scale
Byggteknik
Civil engineering

Publication and Content Type

ref (subject category)
kon (subject category)

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