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Seismic Response from Centrifuge Model Tests of a Scoured Bridge with a Pile-Group Foundation

机译:用桩基基础的冲洗桥的离心机模型试验的地震反应

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A series of seismic centrifuge tests were performed on an RC girder-type bridge with a 3 x 3 pile-group foundation embedded in dry sand to investigate the seismic behavior under various scour conditions. Based on the equivalent primary period and mass, the bridge plate was reduced to a lumped iron block supported by a single pier. The laminar shear box was excited in three earthquake events and one white noise event. The test results show that the bending moment at the pile head and the acceleration at the pile cap both increase significantly with increasing scour depth, which is a potential failure mode in practice. The maximum bending moment, which generally occurs under the soil surface at a distance of approximately 1.9-2.2 times the outer diameter of the pile, is the largest in the corner pile and the smallest in the inner pile. The results show that the maximum bending moment is augmented 63.5% at most by scour. The acceleration response and dominant frequency of the model were noticeably influenced by soil nonlinearity. However, the damping that soil in the far field provided to the bridge system considering soil-structure interaction (SSI) was negligible and has little influence on the system frequency. These observations suggested that measures should be taken to meet the bending moment demand of the pile increased by scour and provided some guidelines for the aseismic design of the bridge and a benchmark for further theory analysis.
机译:在RC Girder型桥上进行了一系列地震离心机测试,其中包含3×3桩基基础,嵌入干砂中,以研究各种冲刷条件下的地震行为。基于等效的初级周期和质量,桥板减小到由单个码头支撑的一块铁块。层状剪切盒在三个地震事件和一个白噪声事件中兴奋。测试结果表明,桩头处的弯曲力矩和桩帽的加速度随着矮小的冲刷深度而显着增加,这是一种潜在的故障模式。通常在土壤表面下发生的最大弯矩,其在桩的外径约为1.9-2.2倍的距离中,是角桩中最大的距离和内部桩中最小的距离。结果表明,最大弯曲力矩由冲刷增强63.5%。模型的加速度响应和主导频率明显受土壤非线性的影响。然而,考虑到土壤结构相互作用(SSI)的桥梁系统提供的远场中的土壤阻尼可忽略不计,对系统频率影响不大。这些观察结果表明,应采取措施来满足灌木的弯曲瞬间需求,并为桥梁的抗震设计提供了一些指导方针和进一步理论分析的基准。

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