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Shake table tests and numerical investigation of a resilient damping device for seismic response control of building structures

机译:用于建筑结构地震响应控制的弹性阻尼装置的振动台试验和数值研究

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摘要

In this study, shake table tests of a multistory steel frame structure designed according to Eurocodes 3 and 8 with and without the newly developed prestressed viscous damper (PVD) have been carried out at the Institute of Earthquake Engineering and Engineering Seismology in Macedonia. An array of strong ground motion records has been applied to the reduced-scale test structure to assess the efficiency and seismic performance of the equipped building with PVDs. It has been revealed that with the implementation of this system, the structural responses were suppressed in the range of 10% to 70%. Series of sensitivity analyses have been performed within the study to investigate the effect of the individual parameters and evaluate the effectiveness of the proposed system. Besides the experimental investigations, extensive numerical simulations of the structure without PVDs versus structure with three different damper placements were performed in ANSYS nonlinear platform, and part of the results that are presented in this paper confirms the remarkable structural performance improvement when using this system. The results also exhibit that the developed finite element models are properly verified through the experimental results and have the capabilities to further investigate the proposed system. It is likely that the proposed control strategy can be used for practical implementations into full-scale buildings to improve the urban seismic resilience.
机译:在这项研究中,马其顿地震工程与工程地震研究所已经对根据欧洲规范3和8设计的多层钢框架结构在有无新开发的预应力粘性阻尼器(PVD)的情况下进行了振动台测试。一系列强大的地面运动记录已被应用于缩小规模的测试结构,以评估配备PVD的建筑物的效率和抗震性能。已经发现,随着该系统的实施,结构响应被抑制在10%至70%的范围内。在研究中已进行了一系列敏感性分析,以调查各个参数的影响并评估所提出系统的有效性。除了实验研究之外,在ANSYS非线性平台中对没有PVD的结构与具有三个不同阻尼器位置的结构进行了广泛的数值模拟,本文提供的部分结果证实了使用此系统时结构性能的显着改善。结果还表明,通过实验结果正确验证了开发的有限元模型,并具有进一步研究所提出系统的能力。拟议的控制策略很可能可以用于大规模建筑物的实际实施中,以提高城市的抗震能力。

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