Linked from
The 26 pages that link to Wind engineering, each with the reason it gives.
Suspension bridgeRelated: Wind can excite motion in flexible bridge decks and cables.
Wind tunnelRelated: Boundary-layer tunnels simulate winds over buildings and terrain.
SkyscraperRelated: Wind forces and sway often govern skyscraper design more than gravity loads.
Structural loadRelated: It estimates wind pressures and dynamic responses used in structural design.
Eiffel TowerRelated: Wind shaped the tower’s curved profile and structural calculations.
Burj KhalifaRelated: Wind shaped the tower's setbacks, form, and structural design.
AnemometerRelated: Engineers use measured wind speeds to assess loads and safety.
ViaductRelated: Long exposed decks and tall piers must withstand wind forces and vibration.
Taipei 101Related: Wind-induced sway shaped the tower’s aerodynamic and structural design.
Millau ViaductRelated: Wind stability mattered for the exceptionally high deck and slender pylons.
Space NeedleRelated: Strong winds shape the Space Needle's structural design and operating limits.
Great Seto BridgeRelated: Long exposed spans require design for strong winds over the sea.
Mackinac BridgeRelated: Wind loads shaped the bridge’s stiffening system and safety requirements.
Ostankino TowerRelated: Wind loads shape the tower's structural design and sway limits.
Statue of UnityRelated: Wind forces are a major design consideration for a structure of this height.
Willis TowerRelated: Wind loads shaped the tower’s structural system and stepped profile.