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The response of tall buildings to far-field earthquakes and the case of a 49-storey steel building

机译:高层建筑对远场地震的反应以及一栋49层高的钢结构建筑

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This paper investigates the seismic response of an instrumented 49-storey steel structure in San Francisco to weak, far-field, and strong, near-field ground motions. The instrumentation records obtained during the 1989 Loma Prieta earthquake are used to verify the accuracy of the predictions of the time-history analysis of the model. The ChiChi-002 ground motion record from the 1992 Chi-Chi earthquake in Taiwan (PGA = 0.08 g), representing a 'weak, far-field' earthquake and the record from the 1994 Northridge-Newhall earthquake (PGA = 0.60 g) representing a 'strong, near-field' earthquake were used in the study. The results showed that the force, acceleration, and displacement responses of this long-period structure to the 'weak far-field' ground motion are much larger than its response to the 'strong, near-field' ground motion. Also, the response attenuates at a slower rate for the weak, far-field earthquake, indicating the possibility of greater damage, both to structural and non-structural elements, during the earthquake. Interim seismic design recommendations are formulated to address this issue in the design of tall buildings with long periods.
机译:本文研究了旧金山一个仪器化的49层钢结构对弱,远场和强,近场地震动的地震响应。 1989年Loma Prieta地震中获得的仪器记录用于验证模型时程分析预测的准确性。来自台湾的1992年Chi-Chi地震(PGA = 0.08 g)的ChiChi-002地面运动记录代表“弱,远场”地震,以及1994年Northridge-Newhall地震(PGA = 0.60 g)的记录研究中使用了“强近场”地震。结果表明,这种长周期结构对“弱远场”地震动的力,加速度和位移响应远大于其对“强,近场”地震动的响应。同样,对于弱远场地震,响应以较慢的速度衰减,这表明在地震期间可能会对结构和非结构元素造成更大的破坏。制定了临时抗震设计建议,以解决高层建筑长期设计中的这一问题。

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