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Lessons Learned from Evaluating the Responses of Instrumented Buildings in the United States: The Effects of Supporting Building Characteristics on Floor Response Spectra

机译:从评估美国仪器仪表建筑物的响应中学到的经验教训:支撑建筑物特性对楼层响应谱的影响

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摘要

Floor spectra of many instrumented buildings are evaluated to identify and quantify influential parameters on the horizontal seismic responses of acceleration-sensitive nonstructural components (NSCs). It is shown that many of these parameters are not explicitly incorporated into the American Society of Civil Engineers ASCE 7-16 design equations and are challenging to capture through numerical building models. Significant torsional responses are identified, even for nominally regular buildings, which can increase seismic demands on NSCs located at a floor periphery. For many instrumented buildings, especially single-story ones, floor diaphragms behave as flexible in their plane. This behavior, while mitigating torsional responses, can increase demands on NSCs located away from elements of the lateral-force resisting systems. An evaluation of floor acceleration responses of instrumented buildings with basements reveals that in many cases, even with the presence of perimeter concrete basement walls, accelerations at grade level could be significantly larger than those at lower basement levels. Consideration should be given to establishing the seismic base at the lowermost basement elevation.
机译:对许多仪器仪表建筑物的地板光谱进行评估,以识别和量化对加速度敏感的非结构性组件(NSC)的水平地震响应的影响参数。结果表明,这些参数中的许多参数未明确纳入美国土木工程师学会ASCE 7-16设计方程式,并且很难通过数值构建模型进行捕捉。即使对于名义上规则的建筑物,也可以识别出显着的扭转响应,这会增加对位于地板外围的NSC的地震要求。对于许多带仪表的建筑,尤其是单层建筑,地板隔膜在其平面上表现出柔韧性。这种行为在减轻扭转响应的同时,可能会增加对远离横向抗力系统元件的NSC的要求。对带地下室的仪器化建筑物的地板加速度响应的评估表明,在许多情况下,即使存在外围混凝土地下室墙,坡度水平的加速度也可能明显大于低层地下室的加速度。应该考虑在最低的地下标高处建立地震基础。

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  • 来源
    《Earthquake spectra》 |2019年第1期|159-191|共33页
  • 作者单位

    Univ New Hampshire, Dept Civil & Environm Engn, Durham, NH 03824 USA;

    Univ New Hampshire, Dept Civil & Environm Engn, Durham, NH 03824 USA;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 04:12:59

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