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SIMPLIFIED DESIGN METHOD FOR ENERGY DISSIPATING DEVICES IN RETROFITTING OF SEISMICALLY ISOLATED BRIDGES

机译:用于隔离桥接桥接器改装中的能量耗散装置的简化设计方法

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This paper presents an innovative simplified method for the optimum design of seismically isolated bridges incorporating energy dissipating devices. For an isolated bridge subjected to an earthquake, the deformation is concentrated in the isolators, which greatly reduces the seismic base shears transmitted from the superstructure to the substructures. However, some factors such as space limitations, stability requirement etc. limit the allowable deformation taking place across an isolator. To control the deformation of the isolators, supplemental energy dissipating devices can be introduced into the isolation system. This may nevertheless increase the total structure base shear and the merit of adding dampers has to be evaluated property. In this study, a simplified approach is developed in order to optimize the performance of the isolated structure. This method is based on a simplification of the system and by setting objectives for displacement reduction as well as acceptable base shear increase. Based on this approach, damper stiffness and damping is determined as a function of pier and isolator stiffness. The method provides a range of added stiffness and damping that will be needed to reduce the total displacement of the structure while controlling the increased structural base shear. To verify the robustness of the method, response spectrum analysis of a typical isolated bridge has been performed. The numerical simulations showed a close relation with the proposed simplified method. It is concluded that the proposed simplified approach has the potential to optimize the performance of isolated bridges incorporating energy dissipating devices.
机译:本文介绍了一种创新的简化方法,可利用耗能器件的地震隔离桥接设计。对于对地震进行地震的隔离桥,将变形集中在隔离器中,这极大地减少了从上部结构传递到子结构的地震基剪剪。然而,一些因素如空间限制,稳定性要求等限制在隔离器上发生的允许变形。为了控制隔离器的变形,可以将补充能量耗散装置引入隔离系统。然而,这可能会增加总结构基础剪切,并且必须评估添加阻尼器的优点。在该研究中,开发了一种简化的方法,以优化隔离结构的性能。该方法基于系统的简化,并通过设置位移降低的目标以及可接受的基础剪切增加。基于该方法,确定阻尼刚度和阻尼作为码头和隔离刚度的函数。该方法提供一系列添加的刚度和阻尼,这将需要减小结构的总位移,同时控制增加的结构基部剪切。为了验证该方法的稳健性,已经执行了典型隔离桥的响应频谱分析。数值模拟显示与所提出的简化方法密切相关。结论是,所提出的简化方法具有优化结合能量耗散装置的隔离桥的性能。

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