The Proceedings of the International Conference on Motion and Vibration Control
Online ISSN : 2424-2977
2020.15
セッションID: 10103
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Design of an active mass damper to simultaneously mitigate seismic acceleration in superstructures and substructures of a mid-story isolation building
Yuta TOMIYOSHIMasaki TAKAHASHISachie KOTSUKIHiroshi KAMBARAAkira FUKUKITA
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This paper proposes a design method for the active mass damper (AMD) applied to super high-rise buildings designed as a building mass damper (BMD) The BMD is a seismic response control device with a soft layer at a relatively high position in the building, and makes the part above the soft layer work as a tuned mass damper. It is designed to decrease the seismic response of the part below the soft layer by a motion of the superstructure. However, since the displacement of the soft layer is limited, any displacement exceeding the allowable clearance must be suppressed. The displacement of the soft layer can be reduced with additional damping and/or springs. However, the addition of damping and/or springs has the countereffect of increasing the seismic response of the building. To solve this problem, we proposed the design method for the AMD, which aims to make the BMD with additional damper and/or springs act like a BMD with no additional element. The effectiveness of the proposed method was demonstrated through numerical calculations.

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© 2020 The Japan Society of Mechanical Engineers
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