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Seismic Isolation of Bridges Using the Principle of Electromagnetic Attraction and Repulsion Cover

Seismic Isolation of Bridges Using the Principle of Electromagnetic Attraction and Repulsion

Open Access
|Dec 2017

Abstract

This paper presents a new type of seismic isolator that uses the principle of electromagnetic attraction and repulsion, to control the friction force between two electromagnets during earthquakes. The two electromagnets are used in conjunction with a secondary high friction dissipating and damping mechanism composed from a 10mm thick neoprene ring layer and two steel surfaces coated with Si3N4 that are used to dissipate the kinetic energy in the bridge deck at some maximum ground accelerations. The isolator utilizes tri-axial accelerometers embedded in the abutments, high current rechargeable batteries and an automated controlling unit. The presented isolator was developed specifically for a concrete bridge deck with a span of 36 meters and simple supported on two abutments, using time history electromagnetic and structural analyses. The paper presents the advantages of using this active seismic isolation system, compared to classical passive devices and the important results obtained in terms of decreasing internal forces on the substructure elements cross sections together with the reduction of relative displacements between the two electromagnets.

Language: English
Page range: 1 - 14
Published on: Dec 29, 2017
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2017 Silviu Alexandru Constantinescu, Ionuț Radu Răcănel, published by Technical University of Civil Engineering of Bucharest
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.