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首页> 外文期刊>Journal of Engineering Mechanics >Free Vibrations of Cylindrical Storage Tanks: Finite-Element Analysis and Experiments
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Free Vibrations of Cylindrical Storage Tanks: Finite-Element Analysis and Experiments

机译:圆柱储罐的自由振动:有限元分析和实验

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摘要

This note summarizes a theoretical and experimental study undertaken to provide a deeper understanding of the effect of different parameters on the coupled modal characteristics of circular cylindrical tanks. First, the most common case of clamped-free tanks resting on rigid foundations is investigated by using finite-element (FE) modeling and holographic experiments. A good agreement between experimental and numerical results is a basis to draw a number of conclusions. For both tank geometries investigated, the frequencies for modes of circumferential parameter n=1 (the “beam” modes) are found to be reduced most significantly by the presence of liquid. Very significant dependence of the radial shell mode shapes on the filling ratio is confirmed both by the FE and experimental results. In addition, nonclassical vibration patterns for radial shell modes were extracted numerically and recorded experimentally. Special attention is paid to the pairs of shell modes. Second, the effects of a flexible foundation and axial compression are investigated using holographic interferometry. The modal responses of this shell–liquid system are found to be different from those of the existing theoretical models.
机译:本说明总结了进行的理论和实验研究,以更深入地了解不同参数对圆柱形储罐耦合模态特性的影响。首先,通过使用有限元(FE)建模和全息实验研究了在刚性基础上搁置的无夹钳储罐的最常见情况。实验和数值结果之间的良好一致性是得出许多结论的基础。对于所研究的两种储罐几何形状,发现由于液体的存在,圆周参数n = 1的模式(“光束”模式)的频率会显着降低。有限元分析和实验结果均证实了径向壳模式形状对填充率的显着依赖性。另外,数值提取了径向壳模式的非经典振动模式,并进行了实验记录。要特别注意成对的shell模式。其次,使用全息干涉法研究了柔性基础和轴向压缩的影响。发现该壳液系统的模态响应与现有理论模型的模态响应不同。

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