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Optimal placement of nonlinear hysteretic dampers on planar structures under seismic excitation

机译:地震作用下平面结构上非线性滞后阻尼器的最优布置

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摘要

In the last twenty years great efforts were carried out to develop the concept of energy dissipation in structures to bring it into an applicable technology. Several devices based on different energy dissipation principles have been developed and implemented worldwide. One of the most important tasks for the designer is to define the locations and sizes of these devices in order to maximize their efficiency and safety. In this work, an efficiently procedure to optimally define the energy dissipation capacity of added nonlinear hysteretic dampers, to meet an expected level of performance on planar structures under seismic excitation is proposed. Knowing that the main contribution to the total uncertainty is due to the excitation and with the aim of achieving a robust design, the excitation is modeled as a stationary stochastic process characterized by a power spectral density compatible with a response spectrum defined by seismic code provisions of the region. Since the analysis is performed in the frequency domain, the nonlinear behavior of dampers is included through stochastic equivalent linearization of Bouc-Wen hysteretic model. The proposed procedure is verified numerically through nonlinear time history analysis using artificial ground motion records.
机译:在过去的二十年中,人们大力开发了结构中的能量消散概念,以将其应用到可应用的技术中。在全球范围内已经开发并实施了几种基于不同能量耗散原理的设备。设计人员最重要的任务之一就是定义这些设备的位置和尺寸,以使其效率和安全性最大化。在这项工作中,提出了一种有效的方法,可以最佳地定义添加的非线性磁滞阻尼器的能量耗散能力,以满足地震激励下平面结构的预期性能水平。知道对总不确定度的主要贡献是由于激励而引起的,并且为了实现鲁棒的设计,将激励建模为平稳随机过程,其特征在于功率谱密度与地震法规规定的响应谱兼容。该区域。由于分析是在频域中进行的,因此通过Bouc-Wen磁滞模型的随机等效线性化来包含阻尼器的非线性行为。通过使用人工地面运动记录的非线性时程分析,对提出的程序进行了数值验证。

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