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Seismic isolation performance sensitivity to potential deviations from design values

机译:隔震性能对可能偏离设计值的敏感性

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Seismic isolation is often used in protecting mission-critical structures including hospitals, data centers, telecommunication buildings, etc. Such structures typically house vibration-sensitive equipment which has to provide continued service but may fail in case sustained accelerations during earthquakes exceed threshold limit values. Thus, peak floor acceleration is one of the two main parameters that control the design of such structures while the other one is peak base displacement since the overall safety of the structure depends on the safety of the isolation system. And in case peak base displacement exceeds the design base displacement during an earthquake, rupture and/or buckling of isolators as well as bumping against stops around the seismic gap may occur. Therefore, obtaining accurate peak floor accelerations and peak base displacement is vital. However, although nominal design values for isolation system and superstructure parameters are calculated in order to meet target peak design base displacement and peak floor accelerations, their actual values may potentially deviate from these nominal design values. In this study, the sensitivity of the seismic performance of structures equipped with linear and nonlinear seismic isolation systems to the aforementioned potential deviations is assessed in the context of a benchmark shear building under different earthquake records with near-fault and far-fault characteristics. The results put forth the degree of sensitivity of peak top floor acceleration and peak base displacement to superstructure parameters including mass, stiffness, and damping and isolation system parameters including stiffness, damping, yield strength, yield displacement, and post-yield to pre-yield stiffness ratio.
机译:地震隔离常用于保护关键任务结构,包括医院,数据中心,电信大楼等。此类结构通常装有对振动敏感的设备,该设备必须提供持续的服务,但如果地震期间的持续加速度超过阈值极限,则可能会失效。因此,峰底加速度是控制此类结构设计的两个主要参数之一,而另一个是峰底位移,因为结构的整体安全性取决于隔离系统的安全性。并且,如果在地震期间峰值基准位移超过了设计基准位移,则可能会发生隔离器的破裂和/或弯曲以及在地震缝隙附近撞到止挡件。因此,获得准确的峰底加速度和峰基位移至关重要。但是,尽管计算了隔离系统和上部结构参数的名义设计值以满足目标峰值设计基础位移和峰值底板加速度,但其实际值可能会偏离这些名义设计值。在这项研究中,在具有近断层和远断层特征的不同地震记录下,在基准剪力建筑物的背景下,评估了配备线性和非线性隔震系统的结构的地震性能对上述潜在偏差的敏感性。结果提出了顶层加速度峰值和基础位移峰值对上部结构参数(包括质量,刚度和阻尼)的敏感性的程度,以及隔离系统参数(包括刚度,阻尼,屈服强度,屈服位移和屈服后到屈服的敏感性)刚度比。

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