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A coupled BE-FE study for evaluation of seismically isolated cylindrical liquid storage tanks considering fluid-structure interaction

机译:考虑流体-结构相互作用的BE-FE耦合研究,用于评估地震隔离的圆柱形液体储罐

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The effects of base-isolation on the seismic response of cylindrical vertical flexible liquid storage tanks subjected to horizontal seismic ground motion are presented in this paper. The whole system consists of two main parts: the base-isolation component, and the fluid-structure interaction subsystem. Dynamic analysis of liquid storage tank is achieved through the use of finite shell elements for the structure and internal boundary elements for the liquid region. The boundary element equations are employed to obtain an equivalent liquid mass matrix which is then coupled with the shell structure mass matrix, resulting in the coupled equations of motion. Finally, the coupled equations of motion are connected with the base-isolation system to observe the whole system behavior. A bilinear hysteretic element is used to illustrate the base-isolation system. The analysis is performed in the time domain in which, hydrodynamic interaction is taken into account. It is shown that the seismic response of the isolated tank could be significantly reduced compared with the fixed-foundation tanks. Parametric studies are carried out to study the effects of different system parameters on the effectiveness of the base-isolation system. These parameters are the tank geometry aspect ratio (height to radius), the flexibility of the isolation system, the liquid surface displacement variations, and the tank wall flexibility. It is observed that the seismic isolation is more effective in slender tanks in comparison with broad tanks. Furthermore, it is shown that the isolation efficiency is partially more significant in rigid tanks. It is also noticeable that flexible isolators considerably reduce the seismic response in comparison with stiff isolators. Despite the foregoing advantages, liquid surface displacement increases due to seismic isolation, especially in slender tanks.
机译:提出了基础隔震对圆筒形垂直挠性储液罐在水平地震作用下的地震反应的影响。整个系统由两个主要部分组成:基础隔离组件和流固耦合子系统。通过对结构使用有限的壳单元和对液体区域使用内部边界单元,可以对储液罐进行动态分析。使用边界元方程获得等效的液体质量矩阵,然后将其与壳结构质量矩阵耦合,从而得到耦合的运动方程。最后,将耦合的运动方程式与基本隔振系统相连,以观察整个系统的行为。双线性磁滞元件用于说明基础隔离系统。在时域中进行分析,其中考虑了流体动力相互作用。结果表明,与固定基础储罐相比,隔离储罐的地震响应可以大大降低。进行了参数研究,以研究不同系统参数对基本隔离系统有效性的影响。这些参数是储罐几何形状的长宽比(高度与半径),隔离系统的柔性,液体表面位移的变化以及储罐壁的柔性。可以看出,与宽型储罐相比,在细长型储罐中隔震更为有效。此外,已经表明,在刚性罐中隔离效率部分更高。还值得注意的是,与刚性隔离器相比,柔性隔离器大大降低了地震响应。尽管具有上述优点,但由于地震隔离,液体表面位移增加,特别是在细长罐中。

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