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Pedestrian Bridge as Public Art:
Detailing in Architecturally Exposed Structural Steel
Terri Meyer Boake
University of Waterloo
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
PEDESTRIAN BRIDGE AS PUBLIC ART
Detailing in Architecturally Exposed Structural Steel
Terri Meyer Boake
Professor
School of Architecture | University of Waterloo
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Artistic Potential – Bridge as Public Art
 Many municipalities are developing dedicated
funds for public art
 Possible to add budget to the bridge if it is also
seen as “public art”
 Pedestrian/cycle bridges can be used “as” art
 The improvement of the human condition by
design
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Benefits of AESS for Pedestrian Bridges
 Artistic potential
 Urban activation
 Prefabrication of near complete elements prior to
erection/installation
 Transportation to site of large bridge elements
 Minimization of disruption to normal traffic flows
during erection
 Durability and ease of inspection for maintenance
Peace Bridge | Calgary, Canada
Arganzuela Bridge | Madrid, Spain
Simone Beauvoir Footbridge | Paris, France
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Urban Activation
 Encourage public use if the bridge is an attraction
 Entails designing the spaces of the bridge for
activities
 May necessitate more width or points of overview
or for lingering
 May require the separation of cyclists from slower
moving pedestrians to avoid accidents
 Some bridges will preclude cyclists for this reason
 Must ponder bridge access for the disabled and
cyclists (ramps)
Brooklyn Bridge | New York City, USA
Millennium Footbridge | London, UK
Gateshead Millennium Bridge | Newcastle, UK
Cycle access ramp to bridge | Guangzhou, China
Peace Bridge | Calgary, Canada
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Prefabrication
 AESS/steel is easily shop fabricated
 Steel can come to site prefinished
 Able to reduce the time spent on the site
 POSSIBLE to reduce/eliminate site welding
 POSSIBLE to promote quicker bolted connections
on site
 Depends on aesthetics, member types, span
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Minimized Disruption to Traffic
 Erection is quicker so traffic is less disrupted than
for work that requires extensive scaffolding and
formwork
 Need to understand implications of span
 Clear span versus multiple spans
 Over water, clear span or supports possible?
 Over streets, highways or rail lines, stoppage of traffic
 Lift in segments and join or launch entire bridge?
 Premiums paid for stoppage can be reduced
Image: George Third & SonSkytrain Bridge | Vancouver, Canada
Image: George Third & Son
Toronto, Canada
Puenta de Luz | Toronto, Canada
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Durability
 Extremely important to understand the
atmospheric conditions and risk of corrosion
 Ascertain type of de-icing agents as some are far
more corrosive than others
 Need to obtain higher up front spending on
corrosion system to prevent longer term repairs
 Ensure maintenance schedule
 Detailing for drainage and against pigeons, etc.
Denver, USA
Amgen Bridge | Seattle, USA
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Galvanization
 Likely the most popular and cost effective solution
for corrosion resistance
 Need to understand limits of size of galvanizing
bath as may mean constructing of smaller elements
 Need to ensure drainage holes and coating hollow
sections on inside (more $)
 Complex shapes and thin steel not well suited to
galvanizing
 Hot process so can cause deformations
 Presence of SO2 will accelerate corrosion
Olympia, Greece
Miyazaki, Japan
Polysiloxane coating
Webb Bridge | Melbourne, Australia
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Metallization
 Zinc / aluminum wire is melted and sprayed
 Usually shop applied
 No limits on member sizes
 Relatively cold process (150C) so no issues of
deformation for thin members
 Need to verify applied thicknesses
 Aluminum better for high SO2 levels (industrial
pollutants)
Auckland, New Zealand
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Weathering Steel
 Material most commonly sourced as plate good
 Infers a high level of custom fabrication
 Achieves patina through cycles of wet/dry
 Need to ensure good detailing and drainage
 Keep debris and leaves away as these will trap
moisture and accelerate corrosion
 Not suited to harsh marine climates as salt spray
will accelerate corrosion
 Concern for staining of surfaces below the steel
Glass Bridge| Perth, Australia
Stratford Town Centre Link | London, UK
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Stainless Steel
 Not all stainless steels are equal
 Rough finishes will rust faster
 Must also be cleaned on a regular basis to prevent
staining and pitting
 Marine climates and presence of de-icing agents
will require higher level of steel
 Use at least 316 for basic corrosion prevention
 Severe marine climates will need Duplex 2205
Paddington Basin | London, UK
Helix Bridge | Singapore
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Support Type
 The abutment conditions will influence the type of
bridge
 Mast types need clearances
 Arch supports need good abutments
 Long low bridges require special
foundations/support
TransCanada Overpass | Vancouver, Canada
Pedro e Ines Bridge | Coimbra, Portugal
Solferino Footbridge | Paris, France
Peace Bridge | Calgary, Canada
Millennium Bridge | London, UK
Dalian, China
Yufuin, Japan
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Span Length and Clearances
 Span length important
 Ability to include mid span supports
 Clearance below the deck for traffic
 Height limitations
 Clearances for transportation to the site
 Type of transportation to the site
Museum of Flight | Seattle, USA
http://www.linternaute.com/savoir/grands-chantiers/06/dossier/passerelle-bercy-tolbiac-simone-de-beauvoir/3.shtml
Simone de Beauvoir Footbridge | Paris, France
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Section Types and Detailing
 Most bridges will use either hollow structural
sections or custom fabricated plate
 Budget usually will determine
 You can actually make a pretty interesting bridge
with minimal custom work
Skytrain Bridge | Vancouver, Canada
Prefectural Art Museum | Oita, Japan
Canoe Bridge | Vancouver, Canada
Kurilpa Bridge | Brisbane, Australia
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Custom Fabrication
Or, how to create a corner using plate steel…
Three options:
 Brake form the steel (corners will be rounded)
 Butt weld the corners (corners will be crisper)
 Inset the plates as they meet and fillet weld
(corners will be crisp with a shadow line)
Peace Bridge | Calgary, Canada
Arguanzela Bridge | Madrid, Spain
Pedro e Ines Bridge | Coimbra, Portugal
Puente de Luz | Toronto, Canada
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Architecturally Exposed Steel can be used to
create vital pedestrian bridges that are
capable of reconnecting the disparate parts of
our urban centers.
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
Terri Meyer Boake
Professor
School of Architecture
University of Waterloo
tboake@uwaterloo.ca
www.tboake.com
2014 2015
2011
2014
2012
Thank you!
ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal

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ICSA 2016 - Pedestrian Bridge as Public Art: Detailing in Exposed Steel

  • 1. Pedestrian Bridge as Public Art: Detailing in Architecturally Exposed Structural Steel Terri Meyer Boake University of Waterloo
  • 2. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal PEDESTRIAN BRIDGE AS PUBLIC ART Detailing in Architecturally Exposed Structural Steel Terri Meyer Boake Professor School of Architecture | University of Waterloo ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal
  • 3. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Artistic Potential – Bridge as Public Art  Many municipalities are developing dedicated funds for public art  Possible to add budget to the bridge if it is also seen as “public art”  Pedestrian/cycle bridges can be used “as” art  The improvement of the human condition by design
  • 4. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Benefits of AESS for Pedestrian Bridges  Artistic potential  Urban activation  Prefabrication of near complete elements prior to erection/installation  Transportation to site of large bridge elements  Minimization of disruption to normal traffic flows during erection  Durability and ease of inspection for maintenance
  • 5. Peace Bridge | Calgary, Canada
  • 6. Arganzuela Bridge | Madrid, Spain
  • 7. Simone Beauvoir Footbridge | Paris, France
  • 8. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Urban Activation  Encourage public use if the bridge is an attraction  Entails designing the spaces of the bridge for activities  May necessitate more width or points of overview or for lingering  May require the separation of cyclists from slower moving pedestrians to avoid accidents  Some bridges will preclude cyclists for this reason  Must ponder bridge access for the disabled and cyclists (ramps)
  • 9. Brooklyn Bridge | New York City, USA
  • 11. Gateshead Millennium Bridge | Newcastle, UK
  • 12. Cycle access ramp to bridge | Guangzhou, China
  • 13. Peace Bridge | Calgary, Canada
  • 14. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Prefabrication  AESS/steel is easily shop fabricated  Steel can come to site prefinished  Able to reduce the time spent on the site  POSSIBLE to reduce/eliminate site welding  POSSIBLE to promote quicker bolted connections on site  Depends on aesthetics, member types, span
  • 15. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Minimized Disruption to Traffic  Erection is quicker so traffic is less disrupted than for work that requires extensive scaffolding and formwork  Need to understand implications of span  Clear span versus multiple spans  Over water, clear span or supports possible?  Over streets, highways or rail lines, stoppage of traffic  Lift in segments and join or launch entire bridge?  Premiums paid for stoppage can be reduced
  • 16. Image: George Third & SonSkytrain Bridge | Vancouver, Canada
  • 19.
  • 20.
  • 21. Puenta de Luz | Toronto, Canada
  • 22.
  • 23.
  • 24. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Durability  Extremely important to understand the atmospheric conditions and risk of corrosion  Ascertain type of de-icing agents as some are far more corrosive than others  Need to obtain higher up front spending on corrosion system to prevent longer term repairs  Ensure maintenance schedule  Detailing for drainage and against pigeons, etc.
  • 26. Amgen Bridge | Seattle, USA
  • 27. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Galvanization  Likely the most popular and cost effective solution for corrosion resistance  Need to understand limits of size of galvanizing bath as may mean constructing of smaller elements  Need to ensure drainage holes and coating hollow sections on inside (more $)  Complex shapes and thin steel not well suited to galvanizing  Hot process so can cause deformations  Presence of SO2 will accelerate corrosion
  • 29.
  • 31.
  • 32. Polysiloxane coating Webb Bridge | Melbourne, Australia
  • 33.
  • 34. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Metallization  Zinc / aluminum wire is melted and sprayed  Usually shop applied  No limits on member sizes  Relatively cold process (150C) so no issues of deformation for thin members  Need to verify applied thicknesses  Aluminum better for high SO2 levels (industrial pollutants)
  • 36.
  • 37.
  • 38.
  • 39. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Weathering Steel  Material most commonly sourced as plate good  Infers a high level of custom fabrication  Achieves patina through cycles of wet/dry  Need to ensure good detailing and drainage  Keep debris and leaves away as these will trap moisture and accelerate corrosion  Not suited to harsh marine climates as salt spray will accelerate corrosion  Concern for staining of surfaces below the steel
  • 40. Glass Bridge| Perth, Australia
  • 41.
  • 42. Stratford Town Centre Link | London, UK
  • 43.
  • 44. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Stainless Steel  Not all stainless steels are equal  Rough finishes will rust faster  Must also be cleaned on a regular basis to prevent staining and pitting  Marine climates and presence of de-icing agents will require higher level of steel  Use at least 316 for basic corrosion prevention  Severe marine climates will need Duplex 2205
  • 45. Paddington Basin | London, UK
  • 46. Helix Bridge | Singapore
  • 47.
  • 48.
  • 49.
  • 50. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Support Type  The abutment conditions will influence the type of bridge  Mast types need clearances  Arch supports need good abutments  Long low bridges require special foundations/support
  • 51. TransCanada Overpass | Vancouver, Canada
  • 52. Pedro e Ines Bridge | Coimbra, Portugal
  • 53. Solferino Footbridge | Paris, France
  • 54.
  • 55. Peace Bridge | Calgary, Canada
  • 56. Millennium Bridge | London, UK
  • 57.
  • 59.
  • 61.
  • 62. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Span Length and Clearances  Span length important  Ability to include mid span supports  Clearance below the deck for traffic  Height limitations  Clearances for transportation to the site  Type of transportation to the site
  • 63. Museum of Flight | Seattle, USA
  • 64.
  • 65.
  • 66.
  • 68. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Section Types and Detailing  Most bridges will use either hollow structural sections or custom fabricated plate  Budget usually will determine  You can actually make a pretty interesting bridge with minimal custom work
  • 69. Skytrain Bridge | Vancouver, Canada
  • 70.
  • 71. Prefectural Art Museum | Oita, Japan
  • 72.
  • 73. Canoe Bridge | Vancouver, Canada
  • 74. Kurilpa Bridge | Brisbane, Australia
  • 75.
  • 76. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Custom Fabrication Or, how to create a corner using plate steel… Three options:  Brake form the steel (corners will be rounded)  Butt weld the corners (corners will be crisper)  Inset the plates as they meet and fillet weld (corners will be crisp with a shadow line)
  • 77. Peace Bridge | Calgary, Canada
  • 78. Arguanzela Bridge | Madrid, Spain
  • 79.
  • 80. Pedro e Ines Bridge | Coimbra, Portugal
  • 81. Puente de Luz | Toronto, Canada
  • 82. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Architecturally Exposed Steel can be used to create vital pedestrian bridges that are capable of reconnecting the disparate parts of our urban centers.
  • 83. ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal Terri Meyer Boake Professor School of Architecture University of Waterloo tboake@uwaterloo.ca www.tboake.com 2014 2015 2011 2014 2012 Thank you! ICSA 2016 – 27 to 29 July, 2016 - Guimarães, Portugal