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A displacement-based seismic design procedure for concrete bridges having deck integral with the piers

机译:与桥墩成一体的混凝土桥梁基于位移的抗震设计程序

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摘要

A multi-step displacement-based seismic design procedure is presented and exemplified for concrete bridges having piers integral with a continuous prestressed deck, which is restrained transversely at the abutments but free to slide there longitudinally. It includes a simple estimation of inelastic deformation demands (chord or plastic hinge rotations in piers, curvatures for the deck) via elastic 5%-damped modal response spectrum analysis and normally entails very few design-analysis iterations. Prescriptive detailing and minimum reinforcement rules are relaxed. Instead, the vertical reinforcement of piers is tailored to seismic deformation demands for uniform ductility ratios across the piers, while their transverse reinforcement is detailed on the basis of explicit checks of their integrity under the design earthquake. The procedure is applied to eight different bridges with three or five spans, box girder deck and piers of various cross-sections with about equal or very different heights. Nonlinear response-history analyses are carried out under ground motions well beyond the design earthquake, in order to evaluate the seismic performance of the resulting designs and compare with that of force-based Eurocode 8 designs of the same bridge. The displacement-based procedure is shown to give more cost-effective and balanced designs than Eurocode 8, without loss in seismic performance.
机译:提出并举例说明了一种基于位移的多步抗震设计程序,该程序用于混凝土桥墩,桥墩与连续的预应力桥面为一体,桥面在基台处受到横向约束,但可以在桥基处纵向自由滑动。它包括通过弹性5%阻尼模态响应谱分析来简单估算非弹性变形需求(墩上弦或塑料铰链旋转,桥面曲率),并且通常只需要很少的设计分析迭代。规范性的细节和最小的加固规则得到了放松。取而代之的是,竖井的竖向钢筋是根据地震变形要求量身定制的,以使整个竖井具有均匀的延性比,而竖向钢筋的横向钢筋则是基于对设计地震作用下其完整性的明确检查而制定的。该程序适用于八座跨度为三到五个的不同桥梁,箱梁桥以及高度大约相等或相差很大的各种横截面的墩。非线性响应历史分析是在远远超出设计地震的地震动下进行的,目的是评估所得设计的抗震性能,并与同一桥的基于力的Eurocode 8设计进行比较。与欧洲规范8相比,基于位移的过程显示出更具成本效益和更均衡的设计,而不会降低抗震性能。

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