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Effect of torsional stiffness of prestressed concrete box girders and uplift of abutment bearings on seismic performance of bridges

机译:预应力混凝土箱梁的抗扭刚度和桥墩支座的抬升对桥梁抗震性能的影响

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摘要

Uplift of certain abutment bearings during earthquake may be utilized as a safety mechanism for the protection of the bridge against excessive stress. For this reason design codes such as Eurocode 8 permit the uplift of such bearings under certain conditions.Uplift of an abutment bearing occurs when the torque at the deck end exceeds a critical value. Therefore the torsional stiffness of the deck, before or after concrete cracking, is an important factor. In this work realistic values for the cracked torsional stiffness of the bridge deck are estimated from a parametric study of typical thin-walled prestressed box girders, based on non-linear analysis of softened space truss models proposed in the literature. Moreover the interaction between bearing uplift and pier flexural response is investigated and recommendations for the seismic design of bridges are proposed, taking into account the possibility of uplift of abutment bearings before or after yielding of the piers.
机译:在地震期间某些支座轴承的隆起可用作保护桥梁免受过度应力的安全机制。因此,诸如欧洲规范8之类的设计规范允许在某些情况下抬升此类轴承。当桥面端部的扭矩超过临界值时,就会发生基台轴承的抬升。因此,在混凝土开裂之前或之后,甲板的扭转刚度是重要的因素。在这项工作中,基于文献中提出的软化空间桁架模型的非线性分析,通过对典型的薄壁预应力箱梁的参数研究,估算了桥面板的开裂抗扭刚度的实际值。此外,还研究了支座抬升与桥墩挠曲响应之间的相互作用,并考虑到桥墩屈服前后桥墩支座抬升的可能性,提出了桥梁抗震设计的建议。

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