0
  • DE
  • EN
  • FR
  • International Database and Gallery of Structures

Advertisement

Optimizing the multi-hazard resilience of bridge and building structures

 Optimizing the multi-hazard resilience of bridge and building structures
Author(s): , ,
Presented at IABSE Congress: The Evolving Metropolis, New York, NY, USA, 4-6 September 2019, published in , pp. 2629-2636
DOI: 10.2749/newyork.2019.2629
Price: € 25.00 incl. VAT for PDF document  
ADD TO CART
Download preview file (PDF) 0.45 MB

As the expectations of populations all around the world continue to increase in relation to the resilience of their bridges and buildings to hazards such as seismic events, the need for appropriate...
Read more

Bibliographic Details

Author(s): (Mageba Mexico)
(Mageba Group)
(Mageba International)
Medium: conference paper
Language(s): English
Conference: IABSE Congress: The Evolving Metropolis, New York, NY, USA, 4-6 September 2019
Published in:
Page(s): 2629-2636 Total no. of pages: 8
Page(s): 2629-2636
Total no. of pages: 8
DOI: 10.2749/newyork.2019.2629
Abstract:

As the expectations of populations all around the world continue to increase in relation to the resilience of their bridges and buildings to hazards such as seismic events, the need for appropriate solutions – which can be applied both to new structures and to existing ones – grows accordingly. A wide range of solutions is available, such as shock absorbers and shock transmission units which can be used to dampen or optimally transmit forces that would otherwise damage a structure, and seismic isolators which can protect buildings and bridges from destructive ground motions. Expansion joints can be equipped with features that protect a bridge, at its key movement nodes, from damage due to larger-than-expected movements, and structural health monitoring (SHM) can be used to enable hazards to be identified and to provide immediate notification of any event that might make a structure unsafe. Various such methods of enhancing resilience of structures to seismic and other hazards are described.

Keywords:
bridge damper seismic building monitoring SHM Hazard isolator shock absorber STU