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Seismic Design of Bridges against Near-Fault Ground Motions Using Combined Seismic Isolation and Restraining Systems of LRBs and CDRs

机译:使用组合地震隔离和LRB和CDR抑制系统对近断层地运动的桥梁抗震设计

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This paper focuses on the seismic isolation design of near-fault bridges under the seismic excitations of near-fault ground motions in high-intensity earthquake zones and proposes a combined control system using lead rubber bearings (LRBs) and cable displacement restrainers (CDRs) along with ductility seismic resistance for the reinforced concrete piers. As part of the performance-based seismic design framework, this study provides the quantitative design criteria for multilevel performance-based objectives of a combined control system under conditions of frequent earthquake (E1), design earthquake (medium earthquake), and rare earthquake (E2). Moreover, in this study, a preliminary performance-based seismic isolation design for a near-fault actual highway bridge in high-intensity earthquake zones (basic peak of ground acceleration 0.4?g) was developed. Using nonlinear time-history analysis of the actual bridge under near-fault ground motions, the feasibility of a performance-based design method was validated. Furthermore, to ensure the predicted performance of the isolated bridges during a strong earthquake, a relatively quantitative design in structural details derived from the stirrup ratio of piers, expansion joints gap, supported length of capping beams, and limited vertical displacement response was obtained.
机译:本文侧重于高强度地震区附近故障地面运动的地震激励下近故障桥梁的地震隔离设计,并用铅橡胶轴承(LRB)和电缆排量抑制器(CDR)提出了组合控制系统延展性抗延伸混凝土墩的抗震性能。作为基于性能的地震设计框架的一部分,本研究提供了在频繁地震(E1),设计地震(中地震)和稀土地震条件下组合控制系统的基于组合控制系统的基于组合控制系统的基于多级性能的基于组合性的基于效应的目标标准的定量设计标准。(E2 )。此外,在本研究中,开发了一种基于近端故障实际公路桥的初步性能的地震隔离设计(在高强度地震区(地面加速0.4μm)的基本峰值)。在近故障地面运动下使用实际桥梁的非线性时间历史分析,验证了基于性能的设计方法的可行性。此外,为了确保在强烈的地震期间预测隔离桥的性能,获得了源自桥墩的搅拌比的结构细节的相对量的设计,伸缩接头间隙,覆盖光束的支撑长度和有限的垂直位移响应。

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