Case study on base isolation

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JavaScript is disabled for your browser. Some features of this site may not work without it. Toggle navigation. Base isolation case study Author s Ching, Kenneth A. Kenneth Apostol. Download Full printable version
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Base isolation presentation final

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Report on Study on Base Isolation Techniques.

In my previous posts on the structural vibration control methods, I discussed various active and passive damping devices. These are typically installed on the higher floors of structures. Base isolation is widely used in the earthquake-resistant design. This passive control technique basically decouples the structure from the ground motion by introducing a flexible or sliding type interface. During the earthquake, when the frequency of the ground motion is close to the natural frequency of the building, the structure can sway significantly. Base isolation deflects and dissipates the seismic energy, lowering the natural frequency of the structure. That way, the base isolation minimizes the displacement of the structure and protects its structural integrity.
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BUILDINGS WITH BASE ISOLATION TECHNIQUES (Report)

A huge moral responsibility lies on their shoulders since the possible risk of loss of life is involved. Many new systems have been developed, either to reduce the earthquake forces acting on the structure or to absorb a part of the seismic energy. Base isolation in one of the most widely accepted and implemented seismic protection system.
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Base isolation is one of the most popular means of protecting a structure against earthquake forces. It is one of most powerful tools of earthquake engineering pertaining to the passive structural vibration control technologies. It is easiest to see the principle at work by referring directly to the most widely used of these advanced techniques, known as base isolation. A base isolated structure is supported by a series of bearing pads, which are placed between the buildings and building foundation.
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