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Design of a Seismically Isolated Railway Viaduct over Axios River in Northern Greece

机译:希腊北部Axios河上地震隔离的铁路高架桥的设计

摘要

The paper presents the salient features of the design of the Railway viaduct over Axios River on the new high-speed double railway line, which is the longest (800m) railway bridge in Greece constructed using the travelling gantry method. Located in a high seismic hazard area, the viaduct is provided with an isolation system aiming to reduce the structural response to seismic loading, a solution that presents several challenges in the case of railway bridges and cannot be implemented solely on the basis of existing codes. Lead-rubber bearings are provided at each pier to deck connection and system damping is further increased through fluid viscous dampers at each abutment. To verify the performance of the isolation system, analysis for seismic actions is conducted in three discrete stages of increasing complexity. Seismic forces and displacements are found to be within acceptable limits and serviceability requirements are also met. Conclusions are drawn regarding the feasibility of using passive systems in railway bridges in seismic areas.
机译:本文介绍了新的高速双铁路线上Axios河上的铁路高架桥设计的显着特征,这是希腊使用行车龙门法建造的最长(800m)铁路桥梁。高架桥位于地震危险性高的区域,旨在降低地震荷载对结构的响应,该系统在铁路桥梁的情况下会带来一些挑战,并且不能仅根据现有法规来实施。每个墩台到甲板的连接处都装有铅橡胶轴承,并且通过每个桥台上的流体粘性阻尼器进一步提高了系统阻尼。为了验证隔离系统的性能,在三个复杂度不断增加的离散阶段中进行了地震作用分析。发现地震力和位移在可接受的范围内,并且还满足了使用性要求。得出有关在地震区铁路桥梁中使用无源系统的可行性的结论。

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