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首页> 外文期刊>Journal of bridge engineering >Effectiveness of Negative Stiffness System in the Benchmark Structural-Control Problem for Seismically Excited Highway Bridges
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Effectiveness of Negative Stiffness System in the Benchmark Structural-Control Problem for Seismically Excited Highway Bridges

机译:负刚度系统在地震激励公路桥梁基准控制问题中的有效性

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摘要

The effectiveness of a novel negative stiffness device (NSD) and damper system for reduction of the seismic response of highway bridges was investigated in this study. To this end, a Phase II benchmark highway bridge was employed for the numerical evaluation. By engaging the NSD at an appropriate apparent yield displacement, the combination of isolation system and NSD device behaves like a softening system, resulting in an increase in the combined system displacement response. The increased deformation of the combined system is reduced by additional passive damping in parallel with the NSD. An analytical model for the NSD was developed. Experimental results are presented to verify the analytical model of the NSD. The effectiveness of the proposed NSD in response control was evaluated by numerical simulation of the benchmark highway bridge, and the results demonstrate that the proposed passive NSD and damper system is beneficial in controlling the seismic response of base-isolated bridges and provides performance comparable to the sample semiactive control but by passive means. (C) 2018 American Society of Civil Engineers.
机译:在这项研究中,研究了新型负刚度装置(NSD)和阻尼器系统在降低公路桥梁地震响应方面的有效性。为此,采用了第二阶段基准公路桥梁进行数值评估。通过以适当的表观屈服位移接合NSD,隔离系统和NSD器件的组合就像软化系统一样工作,从而导致组合系统位移响应增加。通过与NSD并行附加的被动阻尼,可以减少组合系统变形的增加。开发了NSD的分析模型。提出实验结果以验证NSD的分析模型。通过基准公路桥梁的数值模拟评估了拟议的NSD在响应控制中的有效性,结果表明,拟议的被动NSD和减振器系统有利于控制基础隔震桥梁的地震响应,并提供可与公路桥梁相媲美的性能。样本半主动控制,但采用被动方式。 (C)2018美国土木工程师学会。

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