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Jenn-Shin Hwang National Taiwan University of Science & Technology

Seismic Control Applications in Taiwan. Jenn-Shin Hwang National Taiwan University of Science & Technology National Center for Research on Earthquake Engineering JSH@mail.ntust.edu.tw , jshwang@ncree.gov.tw. Equation of Motion. Energy Equation. Energy Demand by Earthquake.

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Jenn-Shin Hwang National Taiwan University of Science & Technology

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  1. Seismic Control Applications in Taiwan Jenn-Shin Hwang National Taiwan University of Science & Technology National Center for Research on Earthquake Engineering JSH@mail.ntust.edu.tw , jshwang@ncree.gov.tw

  2. Equationof Motion Energy Equation

  3. Energy Demand by Earthquake Energy Supply of Structure Earthquake Input Energy Viscous Damping Energy Hysteretic Energy Kinetic Energy Elastic Strain Energy Absolute Energy Equation of A Structure Responding to An Earthquake

  4. Conventional Seismic Design Inelastic deformations of structures Energy Consideration Energy dissipation relies on Damage

  5. Strategies for Seismic Protection of Structures (1) Increase Energy Dissipation Capacity of Structures ---- Implementation of Energy Dissipation Devices (2) Reduce Energy Demand by Earthquake ---- Adoption of Seismic Isolation Design

  6. Energy Dissipation Devices Applied In Taiwan • Hysteresis Type Dampers: (Hysteretic Energy) • ADAS (Added Damping and Stiffness) • TADAS (Triangular ADAS) • RADAS (Reinforced ADAS) • LYSSP (Low Yield Steel Shear Panel) • (2) Velocity-Dependent Damper: (Viscous Damping Energy) • Visco-Elastic Dampers, Viscous Dampers • (3) Improved Energy Dissipation Design: (Hysteretic Energy) • BRB (Buckling Restrained Braces or Unbonded Braces)

  7. Hysteretic Type Dampers -- TADAS Experimental Investigation

  8. 京華城 Taipei Living Mall TADAS Installation

  9. Ambassador Hotel at Hsin-Chu Shear Hysteresis Curve Low Yield Steel Shear Panel

  10. Taipei County Hall 33 story steel structure Designed before Chi-Chi Upgraded after Chi-Chi

  11. Low Yield Steel Panel BRB (Buckling Restrained Braces)

  12. BRB Test Results MPa MPa

  13. South Wing BRB West Wing LYSSP

  14. Viscous Damper 宏盛帝寶 Taipei Treasure Palace

  15. Visco-Elastic Shear Wall

  16. Viscous Dampers Tai-Shin Bank

  17. Plan View Elevation View

  18. Viscous Damper Headquarter of Buddhist Association

  19. Plan Elevation

  20. Grand Palace of Taipei 制震壁

  21. Taipei 101 Tower Taipei City Hall Site

  22. 中間層鋼板連接上部抗彎構架 外部鋼板連接下部抗彎構架 Viscous Material 基本構造圖 Damper in Place Sectional View

  23. Viscous Damping Wall Prototype Test

  24. Seismic Isolation Design Lead-Rubber Bearings (LRB) High Damping Rubber Bearings (HDRB) Friction Pendulum Systems (FPS)

  25. Tzu-Chi Hospital at Taipei

  26. Bank of Taiwan

  27. Plan View of Viscous Damper Installation

  28. X-B 立構圖 Y-6 立構圖 Elevation View

  29. Plan View of Floor Isolation Fixed-base raised floor Isolation Gap Isolated Raised Floor

  30. 緩衝區 高架地板 固定區 可動區 樓地版 Sectional View of Floor Isolation System Gap Fixed Isolated Raised Floor

  31. Fabs of Taiwan Semi-Conductor Manufacturing Comp. • (viscous dampers) • 2. Quanta Computers(viscous dampers) • Via IC Chip-Set Design (viscous dampers) • 4. Tzu-Chi Tai-Chung Medical Center(near fault) • (LRB & viscous dampers) • 5. Chun-Haw Bank(LRB & viscous dampers) • 6. Chung-Hwa Telecommunications (viscous dampers) • 7.Chinese Culture University Stadium (BRB) • National Taiwan University Children Hospital (BRB) • Tsu-Chi TV Station (BRB) • National Palace Museum(viscous dampers) • President Corp. Headquarter (viscous dampers) • Tai-ShinBank Headquarter (viscous dampers) • Medium to High Rise Residential Apartment Complex (for the rich and famous)

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