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首页> 外文期刊>The Structural Design of Tall and Special Buildings >Shaking table test and numerical simulation on a vertical hybrid structure under seismic excitation
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Shaking table test and numerical simulation on a vertical hybrid structure under seismic excitation

机译:地震作用下垂直混合结构的振动台试验和数值模拟

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摘要

A shaking table test of a 12-story steel/reinforced concrete (S/RC) frame, which is composed of a 4-story steel frame in the higher part, a 1-story S/RC frame as a transition story in the middle part, and a 7-story reinforced concrete (RC) frame in the lower part of the model, has been conducted, and its results are compared with those of a standard 12-story RC frame to evaluate seismic performance of this S/RC frame. The numerical simulation on such hybrid frame structure has been performed and validated by the above experimental results. It is found that irregular lateral-stiffness distribution along structural height will not only increase rotation at the joint of boundary between transition story and steel frame or concrete frame but also enlarge rotation at such joint and lead to more obvious rigid deformation in steel frame of S/RC frame, which will undoubtedly intensify bending failure. Meanwhile, acceleration response of the upper steel frame will reach its peak when characteristic site period is near the counterpart of the upper steel frame. Further, the maximum interstory drift under frequent earthquake excitation is at the lower substructure, namely, the RC frame, but this is not the case in rare earthquake situation. When it comes to determining damping ratio for vertical hybrid structure, a general method for engineering, which takes concrete and steel damping ratio for the whole structure analysis and then gets envelopes of these results for design, may yield conservative results. Meanwhile, such method may underestimate responses near the transition story.
机译:12层钢/钢筋混凝土(S / RC)框架的振动台测试,该框架由上部的4层钢框架,中间的1层S / RC框架作为过渡层部分,并在模型的下部进行了7层钢筋混凝土(RC)框架的研究,并将其结果与标准12层RC框架的结果进行比较,以评估此S / RC框架的抗震性能。上述实验结果已经对这种混合框架结构进行了数值模拟并得到了验证。研究发现,沿结构高度的不规则的横向刚度分布不仅会增加过渡层与钢框架或混凝土框架的边界处的接缝处的旋转,而且会扩大这种接缝处的旋转,并导致S型钢框架的更明显的刚性变形。 / RC框架,无疑会加剧弯曲破坏。同时,当特征部位周期接近上部钢架的对应部位时,上部钢架的加速度响应将达到峰值。此外,频繁地震激发下的最大层间位移在下部子结构即RC框架处,但在罕见地震情况下并非如此。在确定垂直混合结构的阻尼比时,一种通用的工程方法是将混凝土和钢的阻尼比用于整个结构分析,然后将这些结果的范围进行设计,这可能会产生保守的结果。同时,这种方法可能会低估过渡故事附近的响应。

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