首页> 外文会议>Conference on Structures Under Shock and Impact >IMPACTS OF TRANSVERSE EARTHQUAKES ON SEISMIC RESPONSE OF BRIDGES WITH ROCKING FOUNDATIONS AND VARIOUS SHEAR KEYS
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IMPACTS OF TRANSVERSE EARTHQUAKES ON SEISMIC RESPONSE OF BRIDGES WITH ROCKING FOUNDATIONS AND VARIOUS SHEAR KEYS

机译:横向地震对摇滚基础桥梁地震反应的影响及各种剪切键

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Rocking foundations are proven to be an effective base isolation technique that improves the seismic performance of bridges and minimises the damage at the piers during large earthquakes. However, due to the foundations ability to uplift, the subsequent reduction of the pier's stiffness leads to larger column drifts and deck displacements. This not only attracts larger stresses to the transverse direction of the deck, but also at the abutment which, if not carefully considered, can lead to severe damages. Therefore, this study will investigate the seismic response of bridges with rocking pile foundations subjected to transverse earthquake excitations and compare it to the response of conventional fixed base bridges. Two separate shear key performance levels are investigated for each bridge: (1) non-linear shear keys that break off; and (2) shear keys that remain rigid. 3D numerical models of the bridges are developed using finite element software with consideration of soil-structure interaction. Moreover, non-linear time history analyses are performed on the bridges using four ground-motion records, where their dynamic response are then compared. Results show that the conventional bridges collapsed due to the development of plastic hinging at the piers. However, the bridges with the rocking pile foundations experienced significant deck displacements which caused flexural plastic hinging of the deck and the subsequent collapse of the bridge. Moreover, when the shear keys failed, the deck experienced large displacements at the abutment which caused the bearing to rupture and displace permanently with the risk of unseating and span failure. Bridges with this foundation system will require additional design provisions to prevent such failures from occurring.
机译:摇摆基金会被证明是一种有效的基础隔离技术,可以提高桥梁的地震性能,并在大地震期间最大限度地减少码头的损坏。然而,由于基础升压的能力,码头刚度的随后降低导致较大的柱漂移和甲板位移。这不仅吸引了甲板的横向的较大的应力,而且在邻接中,如果不仔细考虑,则可能导致严重的损害。因此,该研究将研究桥梁的桥梁抗震基础的地震反应,对横向地震激励进行了比较,并将其与传统固定底座桥梁的响应进行比较。为每个桥进行调查了两个单独的剪切键性能水平:(1)断开的非线性剪切键; (2)留下刚性的剪切键。 3D使用有限元软件开发了桥梁的数值模型,考虑到土结构相互作用。此外,使用四个地运动记录在桥上执行非线性时间历史分析,然后比较它们的动态响应。结果表明,由于桥墩的塑料铰接的发展,传统的桥梁塌陷。然而,与摇摆桩基础的桥梁经历了显着的甲板位移,导致甲板的弯曲塑料铰接和随后的桥梁坍塌。此外,当剪切键失败时,甲板在邻接中经历了大的位移,这导致轴承造成破裂并永久地置于未删除和跨度故障的风险。具有此基础系统的桥梁将需要额外的设计规定,以防止发生此类故障。

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