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212 Ketter Hall, North Campus, Buffalo, NY 14260 www.civil.buffalo.edu Fax: 716 645 3733 Tel: 716 645 2114 x 2400 Structural Control through Base Isolation Andrei M Reinhorn Professor of Structural Engineering
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Modern Methods in Earthquake and Vibration Mitigation
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Elastomeric / Natural Rubber Isolators
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Spectral Response Target Period 2-3sec
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Spectral Response
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Site Effects on Spectral Response
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Steel-Laminated Elastomeric Bearings Curtesy Scougal Rubber, Seattle, WA
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Deformed Seismic High Damping Rubber Bearing
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Lead Rubber Bearing
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Whitestone Bridge - Rubber Bearings
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Friction Pendulum System
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Liquid Natural Gas (LNG)Tanks Friction Pendulum System 212 Isolators -20 o C - 30 o C 1000 tons capacity 5% friction +/-30 cm lateral movement period of 2.75 sec
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Hayward City Hall, CA 53 FPS 15 Taylor Fluid Dampers Period 3.0 sec 3.5% Friction +/-28 cm movement 900 tons capacity
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22 FPS 5 sec period +/- 1.30 m movement 2200 tons capacity R=6.2m
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San Francisco Airport International Terminal 267 FPS 3 sec period +/- 60 cm movement 3000 tons capacity
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Court of Appeals San Francisco CA Building Retrofitted with 256 Isolators of type Friction Pendulum System
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Historic Monument Suffered Damage in 1989 Loma Prieta Earthquake
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Installation of FPS Construction of Side Beams Cutting hole for jacks and column removal
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Installation of damper Damper in place and grouted to receive load Cutting the wall along the building
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Court of Appeals- Retrofit of Interior Walls Protected During Construction Interior After Retrofit
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Ball-in-Cone Isolator - Tekton Dev., Arizona
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Wire Rope Isolators
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Elastomeric Bearing Models 2R t
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Elastomeric Bearings Properties Horizontal Stiffness Vertical Stiffness t r = net rubber thickness A t Circular Bearing Square Pad Holed Circular Pad for strip for circular for square
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Elastomeric Bearings Properties Moment Capacity of Circular Pad Effective Stiffness for Square Pad Effective Stiffness for Holed Pad Effective shear strain Effective Stiffness for Circular Pad (EI) eff = E c R 4 /12
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Modified Stiffness- Modified Stiffness for Large S Modified Stiffness for Very Large S For Circular Pad - Small S For Circular Pad Large S K - bulk modulus of material
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Lead Rubber Bearings
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Friction Pendulum System D WW Force Resistance Horizontal Stiffness Effective Stiffness Basic Period
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Friction Pendulum System D WW
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Design Procedure
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Design Example
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D
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Design Analysis 3D-Basis-Tabs series of computer programs available Report 95-0011 * and Program http://civil.eng.buffalo.edu/israeli_engineers SAP2000 available from Computers and Structures, Berkeley, CA IDARC-BRIDGE from University at Buffalo /MCEER Report #98-0011* and Program http://civil.eng.buffalo.edu/idarc-bridge/ (program requires SUN / UNIX computer) * Reports can be obtained from MCEER / University at Buffalo Publications department
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212 Ketter Hall, North Campus, Buffalo, NY 14260 www.civil.buffalo.edu Fax: 716 645 3733 Tel: 716 645 2114 x 2400 THANKS FOR YOUR ATTENTION
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