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Effectiveness of damaged viscoelastic dampers in seismic protection of structures under main shocks and aftershocks

机译:粘弹性阻尼器在主冲击与余震下结构抗震保护中的有效性

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It has been demonstrated through uniaxial reversal loading tests that damaged viscoelastic dampers are to some extent still able to possess stiffness and energy dissipation capabilities. Based on past performance test results, some analytical models originating from the fractional derivative method have been provided to account for the design, beyond-design, and residual performances of viscoelastic dampers. In this study, these models are employed for modelling the actual dynamic behavior of supplemental viscoelastic dampers installed at different stages in the numerical model of a practical high-rise steel building. Scenarios of main shocks and subsequent aftershocks are assumed as seismic inputs. The numerical results indicate that, even though viscoelastic dampers suffer damage during main shocks, the damaged dampers are still effective in reducing the structural acceleration and displacement responses compared with the undamped structural responses. It is assumed in the analytical model of viscoelastic dampers that the shear force will be immediately reduced to the beyond-design performance without hardening behavior when suffering damage at the beginning half-cycle. Thus, the damped structural acceleration control performance at that instant, particularly of the floors installed with the damaged dampers, might not be satisfactory but still superior to the undamped structural performance. Although some doubts are clarified in this study, it is emphasized that damaged viscoelastic dampers must still be appropriately repaired or even replaced before the next major earthquake occurs.
机译:已经通过单轴逆转负载测试证明,损坏的粘弹性阻尼器在一定程度上仍然能够拥有刚度和能量耗散能力。基于过去的性能测试结果,已经提供了源自分数衍生法的一些分析模型,以考虑粘弹性阻尼器的设计,超越设计和残留性能。在这项研究中,这些模型用于建模补充粘弹性阻尼器的实际动态行为,在实用的高层钢结构的数值模型中安装在不同阶段的不同阶段。主要冲击和随后的余震的场景被认为是地震输入。数值结果表明,尽管粘弹性阻尼器在主冲击期间遭受损坏,但损坏的阻尼器仍然有效地降低与未透明的结构反应相比的结构加速和位移响应。假设在粘弹性阻尼器的分析模型中,即当在开始半周期遭受损坏时,剪切力将立即降低到超出设计性能而无需硬化行为。因此,该瞬间的阻尼结构加速度控制性能,特别是用损坏的阻尼器安装的地板,可能不令人满意但仍然优于未透明的结构性能。虽然在本研究中澄清了一些疑问,但强调,在发生下一个主要地震之前,仍然必须适当地修复损坏的粘弹性阻尼器或甚至更换。

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