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首页> 外文期刊>Journal of structural engineering >Seismic Simulation of an Integrated Ceiling-Partition Wall-Piping System at E-Defense. I: Three-Dimensional Structural Response and Base Isolation
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Seismic Simulation of an Integrated Ceiling-Partition Wall-Piping System at E-Defense. I: Three-Dimensional Structural Response and Base Isolation

机译:E-Defense集成式天花板-分隔墙管道系统的地震模拟。 I:三维结构响应和基础隔离

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摘要

The seismic response of a full-scale, 5-story steel moment frame building in base-isolated and fixed-base configurations with an integrated suspended ceiling-partition wall-sprinkler piping system that was shaken at E-Defense is critically assessed. Horizontal floor accelerations were constrained by the isolation systems to relatively low levels, which allowed observation of damage to the integrated system that was directly related to the vertical component of input acceleration. The floor slabs exhibited single mode vibration at their natural periods with widely varying effective damping. Peak vertical accelerations were amplified by an average factor ranging from 3 to 6 from the table to the middle of the floor slabs, at which amplification factors increased as slab vibration periods lengthened. Damage to the ceiling-partion-piping components initiated at slab accelerations of approximately 2 g and became extensive for slab accelerations exceeding 5 g. These metrics establish target vertical accelerations for achieving desired performance objectives. (C) 2015 American Society of Civil Engineers.
机译:严格评估了在基础隔离和固定基础配置下的完整5层钢框架结构的地震响应,该结构具有集成的悬吊式天花板-分隔墙-洒水喷头管道系统,在E-Defense处进行了摇晃。隔离系统将地板水平加速度限制在相对较低的水平,从而可以观察到与输入加速度的垂直分量直接相关的集成系统的损坏。楼板在自然周期内表现出单模振动,有效阻尼变化很大。从工作台到楼板中间的峰值垂直加速度的平均系数为3到6,在此范围内,随着楼板振动周期的延长,放大系数增加。楼板加速度约为2 g时,会损坏天花板部分管道组件,并且当楼板加速度超过5 g时,损坏范围扩大。这些指标建立目标垂直加速度,以实现所需的性能目标。 (C)2015年美国土木工程师学会。

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