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首页> 外文期刊>Journal of structural engineering >Seismic Behavior of Frame-Wall-Rocking Foundation Systems. I: Test Program and Slow Cyclic Results
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Seismic Behavior of Frame-Wall-Rocking Foundation Systems. I: Test Program and Slow Cyclic Results

机译:框架式墙体基础系统的抗震性能。 I:测试程序和缓慢的循环结果

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摘要

The mechanism of foundation rocking has received much attention recently due to its appealing seismic resistant features, namely, self-centering tendency and energy dissipation capability. It is well recognized, however, that other inelastic mechanisms will contribute to a system's seismic resistance. Considering the strength difference between a rocking footing and a shear wall structural fuse, and the system symmetry, six different two-story-two-bay frame-wall-foundation building models were constructed and tested in a geotechnical centrifuge. In this paper, the test program and experimental results when the models were subjected to slow cyclic loading are presented. A companion paper presents results from the dynamic phase of testing. Results indicate that, with the aid of foundation rocking, the system behaves in a ductile and stable manner with no strength degradation, even when the model is pushed to a drift of more than 2.5%. Importantly, when structural and foundation component strengths are approximately equal, the hysteretic energy is reasonably distributed among the superstructure inelastic components and the rocking foundations. Finally, numerical analyses predictions demonstrate comparable local and global response to measurements obtained during the experiments. (C) 2015 American Society of Civil Engineers.
机译:由于其引人注目的抗震特性,即自定心趋势和能量消散能力,基础摇摆的机制近来受到了广泛的关注。但是,众所周知的是,其他非弹性机制也会影响系统的抗震性。考虑到摇摆基脚和剪力墙结构保险丝之间的强度差异以及系统的对称性,在岩土离心机中构建并测试了六个不同的两层两舱框架墙基础建筑模型。本文给出了模型在缓慢循环荷载作用下的测试程序和实验结果。随附的论文介绍了动态测试阶段的结果。结果表明,借助基础摇摆,即使模型被推向超过2.5%的漂移,该系统也能以延性和稳定的方式运行,而不会降低强度。重要的是,当结构和基础构件的强度近似相等时,磁滞能量会合理地分布在上部结构非弹性构件和摇摆基础之间。最后,数值分析预测表明对实验期间获得的测量结果具有可比的局部和整体响应。 (C)2015年美国土木工程师学会。

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