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Experimental and analytical studies on the response of freestanding laboratory equipment to earthquake shaking

机译:独立式实验室设备对地震的响应的实验和分析研究

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This paper presents results of a comprehensive experimental program on the seismic response of full-scale freestanding laboratory equipment. First, quasi-static experiments are conducted to examine the mechanical behavior of the contact interface between the laboratory equipment and floors. Based on the experimental results, the response analysis that follows adopts two idealized contact friction models: the elastoplastic model and the classical Coulomb friction model. Subsequently, the paper presents shake table test results of full-scale freestanding equipment subjected to ground and floor motions of hazard levels with corresponding displacements that can be accommodated by the shake table at the UC Berkeley Earthquake Engineering Research Center. For the equipment tested, although some rocking is observed, sliding is the predominant mode of response, with sliding displacements reaching up to 60 cm. Numerical simulations with the proposed models are performed. Finally, the paper identifies a physically motivated intensity measure and the associated engineering demand parameter with the help of dimensional analysis and presents ready-to-use fragility curves.
机译:本文介绍了有关全面独立式实验室设备地震响应的综合实验程序的结果。首先,进行准静态实验以检查实验室设备和地板之间的接触界面的机械性能。根据实验结果,下面的响应分析采用两个理想的接触摩擦模型:弹塑性模型和经典库仑摩擦模型。随后,本文介绍了加州大学伯克利分校地震工程研究中心的震动台能够承受危险等级的地面和地面运动以及相应位移的大型独立式设备的震动台测试结果。对于测试的设备,尽管观察到一些摇摆,但滑动是响应的主要方式,滑动位移可达60厘米。用提出的模型进行数值模拟。最后,本文在尺寸分析的帮助下确定了一种物理强度测量值和相关的工程需求参数,并提供了现成的易碎性曲线。

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