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Parametric Study of the Seismic Response of Base Isolated Liquid Storage Tanks with Lead-Core Elastomeric Bearings

机译:带铅芯弹性轴承的基础隔震储罐地震响应的参数研究

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摘要

Field reports from past earthquakes indicate that liquid storage tanks are quite susceptible to earthquake related damages due to the sloshing motion of the contained liquid and that the failure of these structures can have catastrophic impacts on the environment in addition to significant financial losses. Recently, the use of seismic response modification strategies such as base isolation and energy dissipation systems have been extended to liquid storage tanks, particularly large liquified natural gas tanks, in order to protect them from the damaging effects of earthquakes. Base isolation involves the installation of horizontally flexible base isolation bearings under the liquid storage tanks to extend the vibration period of the structure and to provide an additional mechanism for energy dissipation. This paper investigates the effects of the variation of mechanical properties of lead-core elastomeric base isolation bearings on the dynamic response of liquid storage tanks through a comprehensive parametric study which was conducted with a script that uses the Matlab state-space solvers. The paper begins by outlining the mechanical analogue system to be used for calculating the overturning moment and the base shear in tank wall as well as the free surface displacements for a cylindrical liquid storage tank subjected to horizontal base excitation. The nonlinear force-displacement characteristics of the bearings are modelled with the Bouc-Wen hysteresis model. Results of the parametric study show that base isolation can be effective at decreasing the base shear and that special attention must be paid to the increases in the sloshing displacements in determining the freeboard height.
机译:过去地震的现场报告表明,由于所容纳液体的晃动,储液罐很容易受到与地震有关的破坏,这些结构的破坏除了对经济造成重大损失外,还会对环境造成灾难性影响。近来,诸如基础隔离和能量耗散系统之类的地震响应修改策略的使用已经扩展到液体储罐,特别是大型液化天然气储罐,以保护它们免受地震的破坏作用。基础隔离包括在储液罐下方安装水平柔性基础隔离轴承,以延长结构的振动周期并提供额外的能量耗散机制。本文通过使用使用Matlab状态空间求解器的脚本进行的全面参数研究,研究了铅芯弹性体基础隔离轴承的机械性能变化对储液罐动态响应的影响。本文首先概述了机械模拟系统,该系统用于计算倾覆力矩和罐壁的基础剪力,以及水平受水平激励的圆柱形液体储罐的自由表面位移。使用Bouc-Wen磁滞模型对轴承的非线性力-位移特性进行建模。参数研究的结果表明,基础隔离可以有效地降低基础剪力,在确定干舷高度时必须特别注意晃动位移的增加。

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