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  2. Tuned mass damper - Wikipedia

    en.wikipedia.org/wiki/Tuned_mass_damper

    Location of Taipei 101's largest tuned mass damper. When installed in buildings, dampers are typically huge concrete blocks or steel bodies mounted in skyscrapers or other structures, which move in opposition to the resonance frequency oscillations of the structure by means of springs, fluid, or pendulums.

  3. Vibration isolation - Wikipedia

    en.wikipedia.org/wiki/Vibration_isolation

    Base isolators for seismic isolation of buildings, bridges, etc. Base isolators made of layers of neoprene and steel with a low horizontal stiffness are used to lower the natural frequency of the building. Some other base isolators are designed to slide, preventing the transfer of energy from the ground to the building. Tuned mass dampers

  4. Damp (structural) - Wikipedia

    en.wikipedia.org/wiki/Damp_(structural)

    Structural dampness is the presence of unwanted moisture in the structure of a building, either the result of intrusion from outside or condensation from within the structure. A high proportion of damp problems in buildings are caused by ambient climate dependent factors of condensation and rain penetration. [1]

  5. Seismic base isolation - Wikipedia

    en.wikipedia.org/wiki/Seismic_base_isolation

    Through the George E. Brown, Jr. Network for Earthquake Engineering Simulation (), researchers are studying the performance of base isolation systems. [16]The project, a collaboration among researchers at University of Nevada, Reno; University of California, Berkeley; University of Wisconsin, Green Bay; and the University at Buffalo is conducting a strategic assessment of the economic ...

  6. The center's carbon-filtered air conditioning system is designed to increase pressure inside the building, to keep out smoke and ash. Dampers, or tiny valves on the air conditioning system, are ...

  7. Seismic vibration control - Wikipedia

    en.wikipedia.org/wiki/Seismic_vibration_control

    After the seismic waves enter a superstructure, there is a number of ways to control them in order to soothe their damaging effect and improve the building's seismic performance, for instance: to dissipate the wave energy inside a superstructure with properly engineered dampers; to disperse the wave energy between a wider range of frequencies;

  8. Earthquake engineering - Wikipedia

    en.wikipedia.org/wiki/Earthquake_engineering

    Metallic yielding dampers (MYDs) Metallic yielding dampers, as the name implies, yield in order to absorb the earthquake's energy. This type of damper absorbs a large amount of energy however they must be replaced after an earthquake and may prevent the building from settling back to its original position. Viscoelastic dampers (VEDs)

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