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Outrigger tuned inertial mass electromagnetic transducers for high-rise buildings subject to long period earthquakes

机译:承受长期地震的高层建筑的支腿调谐惯性质量电磁传感器

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摘要

This paper proposes outrigger tuned inertial mass electromagnetic transducer (TIMET) systems for high-rise buildings subject to long period earthquake excitations. The proposed outrigger TIMET systems consist of the outrigger and TIMET parts. The outrigger damping systems have been proposed as a novel energy dissipation approach to high-rise buildings, in which control devices are installed vertically between the outrigger and perimeter columns to achieve large energy dissipation. While the TIMET has been developed based on the mechanism of the tuned viscous mass damper (TVMD) which can improve energy absorbing capability by taking advantage of resonance effect. However, instead of a viscous material, the damping of the TIMET is provided by a motor which can convert mechanical energy to electrical energy. The focus of this study is to investigate the structural control performance and energy harvesting efficiency of the proposed outrigger TIMET system for high-rise buildings subjected to long period earthquakes through numerical simulations.
机译:本文提出了一种受长期地震激励作用的高层建筑的支腿调谐惯性质量电磁传感器(TIMET)系统。提出的支腿TIMET系统由支腿和TIMET部分组成。悬臂阻尼系统已被提出作为高层建筑的一种新的能量消散方法,其中控制装置垂直安装在悬臂和外围柱之间,以实现大的能量消散。 TIMET是基于调谐粘性质量阻尼器(TVMD)的机理而开发的,它可以利用共振效应来提高能量吸收能力。但是,TIMET的阻尼不是由粘性材料提供,而是由可将机械能转换为电能的电动机提供的。这项研究的重点是通过数值模拟研究拟议的支腿TIMET系统在高层建筑中经受长期地震的结构控制性能和能量收集效率。

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