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On the performance of SCF in seismic isolation of the interior equipment of buildings

机译:SCF在建筑物内部设备隔震中的性能

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The dynamic response of equipment mounted on an isolated raised floor inside a building while the primary fixed base structure is subjected to harmonic and earthquake ground motions is numerically investigated. Sliding concave foundation (SCF) system is utilized for isolating the raised floor. The equations of motion for a MDOF shear building containing a SCF isolated raised floor with a mounted equipment are developed and the rigid link method is utilized to handle the non-linearity of the system. The equipment, which can be modelled as a SDOF or MDOF system, may represent a critical computer unit or telecommunication processing system. SCF can be used easily to achieve the desired long period, necessary for protecting sensitive equipment. In this investigation, the ability of SCF in reducing the acceleration level experienced by the equipment inside a building is demonstrated while the lateral displacement is still within an acceptable range. The analysis considered the case of equipment housed in the upper floors of a building where the acceleration is amplified and the motion contains strong components at long periods. For this purpose, different excitations including both harmonic and real earthquake ground motions are employed and the performance of the system is evaluated.
机译:数值研究了安装在建筑物内部隔离高架地板上的设备在主要固定基础结构经受谐波和地震地面运动时的动态响应。滑动凹基础(SCF)系统用于隔离高架地板。建立了带有SCF隔离式高架地板且安装了设备的MDOF剪力建筑物的运动方程,并采用刚性连接方法来处理系统的非线性。可以建模为SDOF或MDOF系统的设备可能代表关键的计算机单元或电信处理系统。 SCF可以很容易地用于实现保护敏感设备所需的所需的长时间。在这项研究中,证明了SCF降低建筑物内设备所经历的加速度水平的能力,而横向位移仍在可接受的范围内。分析考虑了设备安置在建筑物高层中的情况,在这些建筑物中,加速度被放大并且运动在很长一段时间内包含强烈的分量。为此,采用了包括谐波和真实地震地面运动在内的不同激励,并对系统的性能进行了评估。

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