An inerter‐enhanced asymmetric nonlinear energy sink for response mitigation of structures subjected to harmonic and seismic ground excitations

Jingjing Wang, Chao Zhang, Yuqiang Zheng
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引用次数: 4

Abstract

To improve the applicability of mass dampers in control problems facing different types of uncertainties, asymmetric nonlinear energy sink‐inerters (ANESIs) are proposed. Previous studies reveal that ANESIs have excellent control effect in mitigating impulsive responses but only briefly touch upon their seismic application. This study is intended to provide better understanding in this regard by analyzing the dynamics of the ANESI system when subjected to harmonic and seismic ground excitations. First, the development of ANESIs is described and the theoretical model of ANESIs is updated in accordance with the experimental validation on a three‐story steel‐frame structure. Then analytical investigations are carried out and subsequently a design method is proposed for the ANESI system when subjected to harmonic ground excitation. Finally, 12 seismic ground motions are applied to the ANESI system to assess its control effectiveness, energy and frequency robustness, and space demand. The results show that devices with inerter are in general more effective than those without inerter and the ANESI outperforms its linear and nonlinear counterparts with stronger robustness against changes in structural property and energy level, demonstrating great potential in seismic application.
一种干涉增强的非对称非线性能量汇,用于减轻结构在谐波和地震地面激励下的响应
为了提高质量阻尼器在不同类型不确定性控制问题中的适用性,提出了非对称非线性能量吸收-干涉器(ANESIs)。以往的研究表明,ANESIs在抑制脉冲响应方面具有良好的控制效果,但对其在地震中的应用仅作了简要的介绍。本研究旨在通过分析在谐波和地震地面激励下ANESI系统的动力学,为这方面提供更好的理解。首先,介绍了ANESIs的发展,并根据三层钢框架结构的试验验证,更新了ANESIs的理论模型。在此基础上进行了分析研究,提出了一种适用于谐波地激励的ANESI系统的设计方法。最后,将12个地震地面运动应用于ANESI系统,评估其控制效果、能量和频率鲁棒性以及空间需求。结果表明,一般情况下,有干涉器的装置比没有干涉器的装置更有效,并且ANESI对结构性质和能级变化的鲁棒性更强,优于线性和非线性的同类装置,在地震应用中具有很大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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