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On the seismic behavior of cylindrical base-isolated liquid storage tanks excited by long-period ground motions

机译:长周期地震动激励圆柱型隔震储罐的抗震性能

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A common effective method to reduce the seismic response of liquid storage tanks is to isolate them at base using base-isolation systems. It has been observed that in many earthquakes, the foregoing systems significantly affect on the whole system response reduction. However, in exceptional cases of excitation by long-period shaking, the base-isolation systems could have adverse effects. Such earthquakes could cause tank damage due to excessive liquid sloshing. Therefore, the numerical seismic response of liquid storage tanks isolated by bilinear hysteretic bearing elements is investigated under long-period ground motions in this research. For this purpose, finite shell elements for the tank structure and boundary elements for the liquid region are employed. Subsequently, fluid-structure equations of motion are coupled with governing equation of base-isolation system, to represent the whole system behavior. The governing equations of motion of the whole system are solved by an iterative and step-by-step algorithm to evaluate the response of the whole system to the horizontal component of three ground motions. The variations of seismic shear forces, liquid sloshing heights, and tank wall radial displacements are plotted under various system parameters such as the tank geometry aspect ratio (height to radius), and the flexibility of the isolation system, to critically examine the effects of various system parameters on the effectiveness of the base-isolation systems against long-period ground motions. From these analyses, it may be concluded that with the installation of this type of base-isolation system in liquid tanks, the dynamic response of tanks during seismic ground motions can be considerably reduced. Moreover, in the special case of long-period ground motions, the seismic response of base-isolated tanks may be controlled by the isolation system only at particular conditions of slender and broad tanks. For the case of medium tanks, remarkable attentions would be required to be devoted to the design of base-isolation systems expected to experience long-period ground motions.
机译:降低储液罐地震响应的常用有效方法是使用基础隔离系统将其隔离在底部。已经观察到,在许多地震中,上述系统显着影响整个系统的响应降低。但是,在长时间振动激发的特殊情况下,基本隔离系统可能会产生不利影响。此类地震可能会由于过多的液体晃动而导致水箱损坏。因此,本研究研究了在长期地面运动下双线性滞后轴承元件隔离的储液罐的数值地震响应。为此,采用用于罐结构的有限壳元件和用于液体区域的边界元件。随后,将运动的流体结构方程式与基本隔振系统的控制方程式耦合,以表示整个系统的行为。通过迭代的逐步算法求解整个系统的运动控制方程,以评估整个系统对三个地面运动的水平分量的响应。在各种系统参数(例如,储罐几何尺寸长宽比(高度与半径)和隔离系统的灵活性)下绘制了地震剪切力,液体晃动高度和储罐壁径向位移的变化,以严格检查各种影响系统参数对基础隔震系统抵抗长期地面运动的有效性的影响。从这些分析中可以得出结论,通过在液体储罐中安装这种基础隔离系统,可以大大降低储罐在地震地面运动过程中的动态响应。此外,在长时期地面运动的特殊情况下,仅在细长罐和宽罐的特定条件下,隔离系统才能控制基础隔离罐的地震响应。对于中型坦克,将需要特别注意预期会经历长时间地面运动的基础隔离系统的设计。

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