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Nonlinear energy sink and Eurocode 8: An optimal design approach based on elastic response spectra

机译:非线性能量下沉和欧洲码器8:基于弹性响应光谱的最优设计方法

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摘要

In this paper, the authors propose novel empirical formulae for the optimal design of Nonlinear Energy Sinks (NESs) to control seismic induced vibrations in structures. While large part of the existing literature on NES for seismic applications is based on deterministic analyses of the structural response to recorded ground motions, herein the effectiveness of the device is studied in a stochastic framework. In fact, the seismic excitation has been modeled using a response spectra consistent power spectral density function, taking into account design spectra prescribed into Eurocode 8. Statistics of the structural response have been determined by Monte Carlo Simulations, performing nonlinear time-domain analyses to investigate the dependence of the optimal NES parameters on the main characteristics of the primary system and on the seismic load amplitude. The outcomes of these analyses have been translated into empirical expressions allowing for computing the optimal NES stiffness and damping. Since these are closed-form relationships depending on the main structure and the response spectra parameters, their use allows for an immediate estimate of the NES optimal design configuration, avoiding demanding numerical analyses and making their implementation suitable for practical engineering purposes. The accuracy of the design formulae has been tested by comparison with numerical optimisations for a set of possible configurations of the main structure and for varying intensity of the external excitation. Although the proposed relationships have been extrapolated from single degree of freedom system responses, applications to multi degree of freedom structures is quite straightforward, as shown through two case studies involving the analysis of a 2D multi-storey structure and a 3D multi-bay frame controlled by two orthogonal NESs.
机译:本文提出了用于控制结构中的抗震诱导振动的非线性能量下沉(NESS)的最优设计的新型实证公式。虽然对地震应用的NES的大部分文献是基于确定性分析对记录的地面运动的结构响应,但是在随机框架中研究了装置的有效性。实际上,使用响应光谱的响应谱进行建模的地震激励,考虑到欧式码的设计光谱8.结构响应的统计数据由Monte Carlo仿真确定,执行非线性时域分析来调查最佳NES参数对主要系统的主要特征及地震载荷幅度的依赖性。这些分析的结果已被翻译成允许计算最佳NES刚度和阻尼的经验表达式。由于这些是根据主要结构和响应光谱参数的闭合性关系,因此它们的使用允许立即估计NES最佳设计配置,避免了要求苛刻的数值分析并使其实现适用于实用工程目的。通过比较了设计公式的准确性,通过比较了主要结构的一组可能的构造和用于外部激励的不同强度的数值优化来测试。虽然所提出的关系已经从单一的自由度系统响应外推,但是在多程度的自由度结构中的应用非常简单,如通过两种情况研究所示,涉及分析2D多层结构和3D多架帧控制的3D多架框架由两个正交的ness。

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