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首页> 外文期刊>Bulletin of earthquake engineering >Evaluation on influences of inertial mass on seismic responses and structure-soil interactions of pile-soil-piers
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Evaluation on influences of inertial mass on seismic responses and structure-soil interactions of pile-soil-piers

机译:惯性物质对桩土墩地震反应及结构土相互作用的评价

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摘要

This research is to assess the influences of the inertial mass from the girder on the dynamic characteristic, dynamic response, and structure-soil interaction of a pile-soil-pier subsystem in a scale-model of a cable-stayed bridge. Therefore, both connection configurations between the pile-soil-pier and girder, including the sliding and fixed connections, were designed to present various inertial mass from the superstructure delivered to the pile-soil-pier. The pile-soil-pier supported by a 3 x 3 pile-group in mixed soil placed in a shear box was tested using shaking tables. The dynamic characteristics, seismic responses, inertial interactions, and pile group effects of the pile-soil-pier between the sliding and fixed connections were analyzed under three input motions with different shaking amplitudes. These results showed that more inertial mass from the girder significantly increased the reinforcement strain and bending moment at the column bottom and pile top, displacement at the column top, inertial interaction effects, and pile group effects of the pile-soil-pier due to the sliding connection changing to the fixed connection. The inertial mass increment from the girder noticeably decreased the peak accelerations of the column of the pile-soil-pier when subjected to three input motions with different amplitudes. However, the inertial mass insignificantly affected the accelerations of the pile and free-soil. Therefore, the corresponding kinematic interaction effects were almost unaffected by the inertial mass. Additionally, the evident pile group effects were observed in the sliding and fixed connections between the pile-soil-pier and girder. The numerical model could approximately reproduce the macroscopic seismic responses of the pile-soil-piers with sliding and fixed connections and capture the typical response variations induced by the connection configuration change.
机译:本研究旨在评估主梁惯性质量对斜拉桥缩尺模型中桩-土-桥墩子系统的动力特性、动力响应和结构-土壤相互作用的影响。因此,桩土桥墩和主梁之间的两种连接配置,包括滑动和固定连接,都被设计为呈现从上部结构输送到桩土桥墩的各种惯性质量。利用振动台对放置在剪切箱中的混合土中由3 x 3桩组支撑的桩土桥墩进行了测试。在三种不同振幅的输入运动下,分析了滑动连接和固定连接之间桩-土-桥墩的动力特性、地震反应、惯性相互作用和群桩效应。这些结果表明,由于滑动连接变为固定连接,梁的惯性质量增加,显著增加了桩土桥墩在柱底和桩顶的钢筋应变和弯矩、柱顶位移、惯性相互作用效应和群桩效应。当受到三种不同振幅的输入运动时,梁的惯性质量增量显著降低了桩土桥墩立柱的峰值加速度。然而,惯性质量对桩和自由土的加速度影响不大。因此,相应的运动学相互作用效应几乎不受惯性质量的影响。此外,在桩土桥墩和梁之间的滑动和固定连接中观察到明显的群桩效应。该数值模型可以近似地再现具有滑动连接和固定连接的桩土桥墩的宏观地震响应,并捕捉连接结构变化引起的典型响应变化。

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