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Seismic Design of the I-195 Relocation Bridges: The 'Iway' Project, Providence RI

机译:I-195搬迁桥梁的抗震设计:Providence RI的“ Iway”项目

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Sixteen new bridges were designed to replace the existing Rhode Island I-195 interchange. The new bridges include a steel network arch bridge, curved-steel box-girder spans, steel I-girder curved spans, precast-concrete spans, and rigid-frame cast-in-place concrete spans. Foundation types are drilled shaft, H-pile, and shallow foundation. These bridges are situated in a moderate seismic hazard zone and in an urban area, which introduces significant architectural restraints. A 2,500-year-return earthquake period was designated for seismic design and detail; the non-linear dynamic analysis method, concrete member ductility design, and construction conflict and solution are presented. Hinge-zone plastic mechanism and non-linear strain analysis were applied to relieve some of the reinforcement detail congestion. The two-stage seismic design methodology used and the load and resistance factor design (LRFD) design specification for moderate seismic hazard zone are also discussed in this paper.
机译:设计了16座新桥,以取代现有的罗德岛I-195立交桥。新桥包括钢网拱桥,弯钢箱梁跨度,钢工字梁弯曲跨度,预制混凝土跨度和刚架现浇混凝土跨度。基础类型为钻孔竖井,H型桩和浅基础。这些桥梁位于中等地震危险区和市区,这会带来很大的建筑限制。指定2500年的回波地震周期进行抗震设计和细节设计;提出了非线性动力分析方法,混凝土构件的延性设计以及施工中的矛盾和解决方案。铰链区塑性机理和非线性应变分析被应用来减轻一些钢筋细节的拥挤。本文还讨论了用于中度地震危险区的两阶段抗震设计方法以及荷载和抗力系数设计(LRFD)设计规范。

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