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Energy finite element analysis of vibrating thin plates at high frequency

机译:高频振动薄板的能量有限元分析

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摘要

Energy Finite Element Analysis (EFEA) is developed to solve the problem of vibration plates at high frequency. The energy governing equations in the EFEA based on the space- and time-averaged energy density to represent the general vibration behavior are derived. In this paper, the derived energy equations are analogous to the tradition governing equations in Finite Element Analysis (FEA). Thus, the energy equations can be implemented numerically and applied to complicatedly vibrating structures. To verify the validity of the developed energy finite energy formulation, various energy flow methods are performed for transversely vibrating plates at various hysteresis damping loss factors and excitation frequencies. Finally, the EFEA solutions effectively represent the global variation of exact results, and some figures show that the present EFEA solutions are more analogous to the exact results than the traditional FEA solutions. Hence, the EFEA may be an optional energy flow method to analyze the high frequency problem of complex structures at high frequency.
机译:能量有限元分析(EFEA)旨在解决高频振动板的问题。推导了基于时空平均能量密度的EFEA中代表一般振动行为的能量控制方程。在本文中,导出的能量方程类似于有限元分析(FEA)中的传统控制方程。因此,能量方程可以被数字地实现,并且可以应用于复杂振动的结构。为了验证所开发的能量有限能量公式的有效性,在各种磁滞阻尼损耗因子和激励频率下,对横向振动板执行了各种能量流方法。最后,EFEA解决方案有效地代表了精确结果的整体变化,并且一些数据表明,与传统的FEA解决方案相比,当前的EFEA解决方案与精确结果更相似。因此,EFEA可能是一种可选的能量流方法,用于分析复杂结构在高频下的高频问题。

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