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强震区大跨径混凝土梁桥合理抗震体系研究
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1.中国公路工程咨询集团有限公司;2.海南省交通规划勘察设计研究院

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Study on reasonable seismic system of long-span concrete beam bridge in strong earthquake area
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1.China highway engineering consulting corporation;2.hainan communications planning surveying and design institude

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    摘要:

    本文以海南龙塘南渡江大桥为工程背景,建立了该桥的三维有限元动力模型,首先介绍了地震动输入的选取和有限元模型的建立,其次讨论了摩擦摆式减隔震支座不同的设计参数(支座半径)对桥梁地震响应的影响,得出了适合本桥的最优支座参数;最后对比分析了常规约束体系、摩擦摆式支座减隔震体系及刚构桥体系三种不同约束结构下的桥梁地震响应,结果表明无论在横桥向或纵桥向地震输入下,设置摩擦摆式支座的减隔震体系不仅能够大幅减小全桥结构的地震内力响应,同时还能控制位移响应在合理范围内,证明这种抗震体系对本桥是非常有效的。

    Abstract:

    Based on the engineering background of Hainan Nandu River Bridge, the three-dimensional finite element dynamic model of the bridge is established. Firstly, the selection of ground motion input and the establishment of finite element model are introduced. Secondly, the influence of different design parameters (bearing radius) of friction pendulum vibration reduction and isolation bearing on the seismic response of the bridge is discussed, and the optimal bearing parameters suitable for the bridge are obtained; Finally, the seismic responses of the bridge under three different restraint structures, namely, conventional restraint system, friction pendulum bearing vibration reduction and isolation system and rigid frame bridge system, are compared and analyzed. The results show that the vibration reduction and isolation system with friction pendulum bearing can not only greatly reduce the seismic response of the whole bridge structure under transverse or longitudinal seismic input, At the same time, the displacement response can be controlled within a reasonable range, which proves that this seismic system is very effective for the bridge.

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历史
  • 收稿日期:2021-11-19
  • 最后修改日期:2022-01-07
  • 录用日期:2022-04-20
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