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首页> 外文期刊>KSCE journal of civil engineering >Seismic Response of Liquid Storage Steel Tanks with Variable Frequency Pendulum Isolator
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Seismic Response of Liquid Storage Steel Tanks with Variable Frequency Pendulum Isolator

机译:变频摆式隔振钢质储罐的地震响应

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The seismic response of liquid storage steel tanks (slender and broad) isolated with Variable Frequency Pendulum Isolators (VFPIs) is investigated under normal component of six near-fault ground motions. The continuous liquid mass is lumped as convective mass, impulsive mass and rigid mass. The corresponding stiffness associated with these lumped masses is worked out depending upon the properties of the tank wall and liquid mass. The frictional forces mobilized at the interface of the VFP1 are assumed to be velocity independent. The governing equations of motion of liquid storage steel tanks isolated with the VFPIs are derived and solved in the incremental form using Newmark's step-by-step method assuming linear variation of acceleration over small time interval. For comparative study, the seismic response of liquid storage steel tanks with the VFPIs is compared with that of the same liquid storage steel tanks isolated using the Friction Pendulum Systems (FPSs). In order to measure the effectiveness of isolation system, the seismic response of isolated steel tanks is compared with that of the non-isolated steel tanks. Further, a parametric study has been carried out to critically examine the behaviour of liquid storage steel tanks isolated with VFPIs. The important parameters considered are the friction coefficient of the VFPI, the Frequency Variation Factor (FVF) of the VFPI and the tank aspect ratio. The difference between the liquid storage tanks isolated with the VFPI and the FPS isolators subjected to the harmonic and far-field ground motions was also investigated in this study. Effect of vertical component of ground motions on the behaviour of the VFPI-isolated liquid storage tanks is investigated under triaxial ground excitations by considering the interaction of forces in two orthogonal directions. From these investigations, it is concluded that seismic response, viz. the base shear, the sloshing displacement and the impulsive displacement, of liquid storage steel tanks during near-fault ground motions can be controlled within a desirable range with the installation of the VFPI. Under strong harmonic excitations, the base shear of the VFPI reduces than that of the FPS whereas the sloshing displacement, the impulsive displacement and the isolator displacement of the VFPI exceeds than that of the FPS. It is also found that the isolation by the FPS and VFPI isolators has almost the same effect in the tank to the far-field ground motions. The triaxial ground motions have noticeable effect on the response of the VFPI-isolated liquid storage tanks relative to unilateral ground motion and if ignored, the sliding displacement and base shear will be underestimated.
机译:在六个近断层地面运动的正常分量下,研究了用变频摆式隔离器(VFPI)隔离的储液钢罐(细长和宽)的地震响应。连续的液体质量被集中为对流质量,脉冲质量和刚性质量。与这些集总质量相关的相应刚度取决于罐壁和液体质量的性质而确定。假定在VFP1的界面上移动的摩擦力与速度无关。使用纽马克的逐步方法,假设在较小的时间间隔内加速度线性变化,以增量形式导出并求解了用VFPI隔离的储液钢罐运动的控制方程。为了进行比较研究,将使用VFPI的储液钢罐与使用摩擦摆系统(FPS)隔离的相同储液钢罐的地震响应进行了比较。为了衡量隔离系统的有效性,将隔离钢罐和非隔离钢罐的地震响应进行了比较。此外,已经进行了一项参数研究,以严格检查使用VFPI隔离的储液钢罐的性能。所考虑的重要参数是VFPI的摩擦系数,VFPI的频率变化因子(FVF)和储罐纵横比。在这项研究中,还研究了用VFPI隔离的液体储罐与FPS隔离器之间经受谐波和远场地面运动的差异。在三轴地面激励下,通过考虑两个正交方向上的力的相互作用,研究了地震动垂直分量对VFPI隔离储液罐性能的影响。从这些调查可以得出结论,地震响应即。通过安装VFPI,可以在接近故障的地面运动期间将储液钢罐的基础剪力,晃动位移和脉冲位移控制在理想的范围内。在强谐波激励下,VFPI的基础剪力比FPS减小,而VFPI的晃动位移,脉冲位移和隔离位移超过FPS。还发现,FPS和VFPI隔离器的隔离在储罐中对于远场地面运动几乎具有相同的效果。三轴地面运动对VFPI隔离的储液罐相对于单向地面运动的响应有显着影响,如果忽略,则滑动位移和基础剪力将被低估。

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