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首页> 外文期刊>Bulletin of earthquake engineering >Use of seismic early warning information to calibrate variable dampers for structural control of a highway bridge: evaluation of the system robustness
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Use of seismic early warning information to calibrate variable dampers for structural control of a highway bridge: evaluation of the system robustness

机译:利用地震预警信息校准用于公路桥梁结构控制的可变阻尼器:系统鲁棒性评估

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摘要

The seismic events occurred in recent years highlighted the extreme vulnerability of large part of the existing constructed facilities and the need to adopt innovative solutions to improve their seismic performance. With this purpose, the possible exploitation of a seismic early warning system (SEWS) in the framework of semi-active structural control using magnetorheological (MR) dampers is herein investigated. The main idea consists in the use of these time-varying properties devices to control an hosting structure by changing their behaviour according to an anticipate estimate, provided by the SEWS, of the peak ground acceleration (PGA) of the incoming earthquake. In this way, the dampers are able to adapt their mechanical characteristics to the specific earthquake obtaining the optimal seismic response. The present paper describes the application of this protection technique to a case-study problem, a highway bridge located in Southern California. The seismic response of the benchmark bridge is investigated by nonlinear time-history analyses by adopting 16 real earthquake ground excitations. These accelerograms cover a wide variety of magnitudes, distances to fault and soil types. Possible errors on estimation of PGAprovided by SEWS and their effects on the proposed control system are also considered. The results obtained confirm that unavoidable errors in the PGA estimates provided by the SEWS do not propagate to the seismic response. Conversely, the proposed strategy turns out to damp these errors, resulting in a robust seismic behaviour of the protected structure.
机译:近年来发生的地震事件突显了大部分现有已建设施的极端脆弱性,并需要采用创新的解决方案来改善其地震性能。为了这个目的,本文研究了在使用磁流变(MR)阻尼器的半主动结构控制框架中地震预警系统(SEWS)的可能开发。主要思想在于使用这些时变属性设备,根据SEWS提供的对地震峰值地面加速度(PGA)的预期估计,通过更改其行为来控制主机结构。这样,减震器能够使其机械特性适应特定的地震,从而获得最佳的地震响应。本文介绍了这种保护技术在案例研究问题(位于南加州的公路桥梁)中的应用。通过非线性时程分析,采用16种真实地震地面激励,对基准桥梁的地震响应进行了研究。这些加速度图涵盖了各种幅度,到断层的距离和土壤类型。还考虑了SEWS提供的PGA估计中可能存在的误差及其对所提出的控制系统的影响。获得的结果证实,由SEWS提供的PGA估计中不可避免的误差不会传播到地震响应中。相反,所提出的策略原来是要消除这些误差,从而使受保护结构具有强大的抗震性能。

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