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首页> 外文期刊>Bulletin of earthquake engineering >Experimental and analytical studies on the response of 1/4-scale models of freestanding laboratory equipment subjected to strong earthquake shaking
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Experimental and analytical studies on the response of 1/4-scale models of freestanding laboratory equipment subjected to strong earthquake shaking

机译:独立式实验室设备1/4比例模型在强震中响应的实验和分析研究

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摘要

This paper investigates the seismic response of freestanding equipment when subjected to strong earthquake motions (2% probability of being exceeded in 50 years). A two-step approach is followed because the displacement limitations of the shake table do not permit full-scale experiments. First, shake table tests are conducted on quarter-scale wooden block models of the equipment. The results are used to validate the commercially available dynamic simulation software Working Model 2D. Working Model is then used to compute the response of the full-scale freestanding equipment when subjected to strong, 2% in 50 years hazard motions. The response is dominated by sliding, with sliding displacements reaching up to 70 cm. A physically motivated dimensionless intensity measure and the associated engineering demand parameter are identified with the help of dimensional analysis, and the results of the numerical simulations are used to obtain a relationship between the two that leads to ready-to-use fragility curves.
机译:本文研究了独立式设备在遭受强烈地震运动(50年内超过2%的概率)时的地震响应。由于振动台的位移限制不允许进行全面实验,因此采用了两步方法。首先,在设备的四分之一比例木块模型上进行振动台测试。结果用于验证商用动态仿真软件Working Model 2D。然后,使用工作模型计算全尺寸独立式设备在50年内发生2%的强烈危险运动时的响应。响应以滑动为主,滑动位移可达70 cm。在尺寸分析的帮助下,可以识别出无动机的无量纲强度测量值和相关的工程需求参数,并使用数值模拟的结果来获得两者之间的关系,从而得出易于使用的脆性曲线。

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