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首页> 外文期刊>Earthquake spectra >Forced Vibration Testing Of A Four-story Reinforced Concrete Building Utilizing The Nees@vcla Mobile Field Laboratory
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Forced Vibration Testing Of A Four-story Reinforced Concrete Building Utilizing The Nees@vcla Mobile Field Laboratory

机译:利用Nees @ vcla移动式现场实验室对四层钢筋混凝土建筑进行强制振动测试

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摘要

The nees@UCLA mobile field laboratory was utilized to collect forced and ambient vibration data from a four-story reinforced concrete (RC) building damaged in the 1994 Northridge earthquake. Both low amplitude broadband and moderate amplitude harmonic excitation were applied using a linear shaker and two eccentric mass shakers, respectively. Floor accelerations, interstory displacements, and column and slab curvature distributions were monitored during the tests using accelerometers, linear variable differential transformers (LVDTs) and concrete strain gauges. The use of dense instrumentation enabled verification of common modeling assumptions related to rigid diaphragms and soil-structure-interaction. The first six or seven natural frequencies, mode shapes, and damping ratios were identified. Significant decreases in frequency corresponded to increases in shaking amplitude, most notably in the N-S direction of the building, most likely due to preexisting diagonal joint cracks that formed during the Northridge earthquake.
机译:nees @ UCLA移动现场实验室用于收集1994年Northridge地震中受损的四层钢筋混凝土(RC)建筑物的强迫振动和环境振动数据。低振幅宽带和中振幅谐波激励分别使用线性振动器和两个偏心质量振动器进行。在测试过程中,使用加速度计,线性可变差动变压器(LVDT)和混凝土应变仪监控了地板加速度,层间位移以及柱和板的曲率分布。密集仪器的使用使得能够验证与刚性隔板和土壤-结构-相互作用有关的常见建模假设。确定了前六个或七个固有频率,模态形状和阻尼比。频率的显着降低与振动幅度的增加相对应,最显着的是沿建筑物的N-S方向,这最有可能是由于在Northridge地震期间预先形成的对角缝。

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