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SEISMIC ANALYSIS OF INTEGRAL ABUTMENT BRIDGES INCLUDING SOIL-STRUCTURE INTERACTION

机译:整体邻接桥梁的地震分析,包括土结构相互作用

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Integral abutment bridges are jointless bridges in which the deck is continuous and connected monolithically with the abutment walls supported typically by a single row of piles. Part of the research results from an ongoing project is presented in this paper, which focuses on the effects of two major parameters on the seismic behavior of an integral abutment bridge in Tennessee by considering soil-structure interaction around the piles and in back of the abutments: (1) clay stiffness (medium vs. hard) around the piles, and (2) level of compaction (loose vs. dense) of the abutment wall backfilling. Modal and nonlinear time history analyses were performed on a three dimensional detailed bridge model using the commercial software SAP2000, which clearly showed that (1) compacting the backfilling of the abutment wall will increase the bridge dominant longitudinal natural frequency considerably more than increasing the clay stiffness around the piles; (2) the maximum deflection and bending moment in the piles under seismic loading will happen at the pile-abutment interface; (3) under seismic loading, densely-compacted backfilling of the abutment wall is generally recommended since it will reduce the pile deflection, the abutment displacement, the moments in the steel girder, and particularly the pile moments; (4) under seismic loading, when the piles are located in firmer clay, although the pile deflection, the abutment displacement, and the maximum girder moment at the pier and the mid-span will decrease, the maximum pile moment and the maximum girder moment at the abutment will increase.
机译:积分邻接网桥伸缩缝桥梁,其中甲板是连续的并且与由桩的单一一行通常支持的抵接壁整体相连。从一个正在进行的项目的部分研究成果在本文中,其通过考虑周围的桩,并在桥台背土结构相互作用的重点是在田纳西州的整体式桥台桥梁的抗震性能两大参数的影响,提出:(1)粘土刚度(介质与硬)围绕桩,和压实的(2)水平(相对于松密)抵接壁回填。模态和非线性时程分析是关于使用商业软件SAP2000,这清楚地表明:(1)压缩所述抵接壁的回填将增加桥主导纵向固有频率大大超过增加粘土刚性三维详细桥模型来执行围绕桩; (2)最大挠曲和弯曲力矩下地震载荷的桩会发生在桩邻接接口; (3)根据地震载荷,密压实抵接壁的回填通常推荐,因为它会降低桩偏转,抵靠位移,在钢梁的时刻,特别是桩矩; (4)地震荷载作用下,当桩位于坚挺粘土,尽管桩挠度,支座位移,并在码头的最大梁矩和中跨将减少,最大堆力矩和最大梁时刻在对接将增加。

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