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Displacement-based seismic design of bridge bents retrofitted with various bracing devices and their seismic fragility assessment under near-fault and far-field ground motions

机译:在近断层和远场地震动下加装各种支撑装置的桥梁弯头基于位移的抗震设计及其地震易损性评估

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Implementing energy dissipation braces can be an effective option for mitigating the seismic damage of double- or multi-column bridge bents. This study compares the relative effectiveness of different braces in seismically retrofitting a reinforced concrete (RC) double-column bent. The considered braces include buckling-restrained braces (BRBs), viscous damper braces (VDBs) and piston-based self-centering braces (PBSCs). First, a direct displacement-based design method (DBD) is utilized to design the braces for satisfying the same performance criterion under design earthquakes. Based on that, fragility analysis is conducted to evaluate the seismic vulnerability of the retrofitted bents subjected to near-fault and far-field ground motions. The self-centering performance of the retrofitted bents is also compared by using the post-earthquake residual displacement as a performance indicator. Results indicate that the PBSCs are more effective than BRBs and VDs in reducing the vulnerability of the bent at different damage states under either near-fault or far-field ground motions. In addition, the PBSCs are superior to the other braces in terms of self-centering performance by recovering more bent drift from an earthquake.
机译:实施耗能支撑是减轻双柱或多柱桥弯头地震破坏的有效选择。这项研究比较了不同支具在抗震加固钢筋混凝土双柱弯管中的相对有效性。所考虑的支撑包括屈曲约束支撑(BRB),粘性阻尼支撑(VDB)和基于活塞的自定心支撑(PBSC)。首先,基于直接位移的设计方法(DBD)用于设计支撑,以在设计地震下满足相同的性能标准。在此基础上,进行了脆性分析,以评估加装弯管在近断层和远场地震动下的地震脆弱性。还使用地震后的残余位移作为性能指标,比较了改造后弯头的自对中性能。结果表明,在近断层或远场地面运动下,PBSC比BRB和VD更加有效地减少了在不同损伤状态下弯曲的脆弱性。另外,PBSC通过在地震中恢复更多的弯曲漂移,在自对中性能方面优于其他支架。

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