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VIBRATION TEST OF 1/10 SCALE MODEL OF CYLINDRICAL WATER STORAGE TANK

机译:1/10比例尺圆柱储水罐的振动试验

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Large-scale cylindrical water storage tanks have a large ratio of radius to thickness, which means their thickness is relatively thin compared with the radius. Regarding seismic responses, the deformation of a tank frame is significantly influenced by the sloshing of the water inside the tank and by the bulging vibration of the tank structure, therefore it is important to consider such deformation theoretically and experimentally. This paper describes the results of a vibration test with a 1/10 reduced scale model of a large-scale industrial cylindrical water storage tank, conducted particularly to clarify the dynamic behavior of the tank during a seismic excitation. First a sinusoidal wave excitation experiment was performed for the scale model tank, which measured axial distributions of dynamic fluid pressures, strains and accelerations. Ovaling vibration of the scale model tank also was examined by measuring the circumferential distribution of strains. Furthermore, the dependence of dynamic fluid pressure on the acceleration magnitude of the input excitation was investigated. Secondly, a seismic excitation experiment was conducted using typical seismic waves. Finally, the measuring results were compared with the values calculated using common seismic-proof design methods based on the Housner method or velocity potential theory and the finite element method. Considering the differences between the experiment values and numerical design ones, it became obvious that there was inconsistent between the positive and the negative pressures of the dynamic fluid pressure and that the dynamic fluid pressure was dependent on the acceleration magnitude. And it was suggested that such phenomena were caused by ovaling vibration. They, however, had little effect on the seismic-proof design of the tank in the range of acceleration used in this study.
机译:大型圆柱形储水罐的半径与厚度之比较大,这意味着其厚度与半径相比相对较薄。关于地震响应,罐框架的变形受到罐内部水的晃动和罐结构的鼓胀振动的显着影响,因此在理论上和实验上考虑这种变形是重要的。本文介绍了使用大型工业圆柱形储水罐的1/10缩小模型进行振动测试的结果,特别是为了阐明地震激发期间储罐的动态行为而进行的振动测试的结果。首先,对比例模型储罐进行了正弦波激励实验,该实验测量了动态流体压力,应变和加速度的轴向分布。还通过测量应变的周向分布来检查比例模型罐的椭圆振动。此外,研究了动态流体压力对输入激励的加速度大小的依赖性。其次,利用典型的地震波进行了地震激励实验。最后,将测量结果与使用基于Housner方法或速度势理论和有限元方法的常用抗震设计方法计算出的值进行比较。考虑到实验值和数值设计值之间的差异,显而易见的是,动态液压的正负压力之间不一致,并且动态液压取决于加速度大小。并且认为这种现象是由椭圆形振动引起的。但是,在本研究中使用的加速度范围内,它们对储罐的抗震设计影响很小。

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