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Investigation on seismic resistance of high-rising building installed with viscoelastic-wall dampers

机译:装有粘弹性墙阻尼器的高层建筑抗震性能研究

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Viscoelastic dampers are one of popular vibration mitigation devices applied to tall buildings to reduce seismic and wind-induced vibiration. In this paper, a new kind of viscoelastic-wall damper, which could be installed at the shear-wall location of high-rising buildings, is proposed to enhance the energy disspation ability. The seismic resistance behaviors of one tall building installed with the viscoelastic-wall dampers are investigated by numerical analysis. The mechanical property testing of the viscoelastic-wall damper is carried to investigate its performance parameter under various exciting frequency and strain amplitude. According to the testing results, a mathematical model of viscoelastic -wall damper is modeled based on Kelvin model. On the basis of a 36-floor frame-shear wall structure and using the finite element software ABAQUS, two finite element models of the high-rising building with and without viscoelastic-wall dampers are set up. Elasto-plastic time-history analysis is used to compare the seismic performance of the two structures subjected to the frequently and rarely earthquakes. It is proved that the seismic response of the structure is mitigated effectively when it is equipped with viscoelastic-wall dampers.
机译:粘弹性阻尼器是一种流行的减震装置,应用于高层建筑,以减少地震和风引起的振动。本文提出了一种新型的粘弹性墙阻尼器,可以安装在高层建筑的剪力墙位置,以提高其能量分配能力。通过数值分析研究了一栋装有粘弹性壁阻尼器的高层建筑的抗震性能。进行了粘弹性壁阻尼器的力学性能测试,以研究其在各种激励频率和应变振幅下的性能参数。根据测试结果,基于开尔文模型,建立了粘弹性壁阻尼器的数学模型。基于36层框架剪力墙结构,并使用有限元软件ABAQUS,建立了带有和不带有粘弹性壁阻尼器的高层建筑的两个有限元模型。弹塑性时程分析用于比较遭受频繁和罕见地震的两个结构的抗震性能。实践证明,该结构安装了粘弹性壁阻尼器后,可以有效地减轻结构的地震反应。

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