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Wednesday, February 11, 2026
1-1-2 Oshiage, Sumida City, Tokyo, Japan
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Tokyo Skytree Engineering – Earthquake & Wind Design

Explore the structural innovations that keep Tokyo Skytree safe: shimbashira core, damping systems, and aerodynamic lattice design.

1/26/2026
16 min read
Detail of Tokyo Skytree's steel lattice structure

Part broadcasting mast, part public observatory, the Skytree fuses tradition and tech. Its shimbashira-inspired central core and steel lattice reduce sway without adding excessive mass.

Steel lattice

Core Concepts

  1. Tripod base transitions to circular cross-section aloft.
  2. Central core (shimbashira) decouples from the outer frame.
  3. Tuned mass + oil dampers absorb quake and wind energy.
  4. Hexagonal lattice improves stiffness-to-weight.

The design nods to pagoda resilience: flexible, not brittle.

Floors & Loads

Floors diagram

  350 m: Tembo Deck  
  450 m: Tembo Galleria  
  Above: antennas, maintenance

Seismic Systems (How It Survives Quakes)

  • Central core + outer frame move slightly out of phase to dissipate energy.
  • Oil dampers and tuned mass components reduce amplitude.
  • Flexible connections prevent brittle failures.

Wind Science & Aerodynamics

  • Faceted profile breaks up vortices and reduces crosswind effects.
  • Diagrid elements optimize load paths.
  • Catwalks allow inspection without heavy cranes.

Maintenance & Inspection

  • Catwalks and access points at intervals.
  • Regular repainting/coating cycles for corrosion protection.
  • Glass assemblies designed for replaceability.
Materials
  • High-strength steel plate
  • Fireproofing and corrosion-resistant coatings
  • Laminated glass assemblies

About the Author

Tokyo Travel Expert

Tokyo Travel Expert

I built this Skytree guide to keep your visit simple, spacious, and full of small, helpful tips — from transport to timing to where to linger for the best light.

Tags

Architecture
Engineering
Earthquake
Design

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