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Vibration Analysis of Fluid Conveying Carbon Nanotubes Based on Nonlocal Timoshenko Beam Theory by Spectral Element Method

机译:基于非局部Timoshenko束理论的流体传输碳纳米管振动的谱元分析

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摘要

In this work, we applied the spectral element method (SEM) to analyze the dynamic characteristics of fluid conveying single-walled carbon nanotubes (SWCNTs). First, the dynamic equations for fluid conveying SWCNTs were deduced based on the nonlocal Timoshenko beam theory. Then, the spectral element formulation was established for a free/forced vibration analysis of fluid conveying SWCNTs by introducing discrete Fourier transform. Furthermore, the proposed method was validated using several comparison examples. Finally, the natural frequencies and dynamic responses of a simply-supported fluid conveying SWCNTs were calculated by the SEM, considering different internal fluid velocities and small-scale parameters (SSPs). The effects of fluid velocity and SSPs on the dynamic characteristics of SWCNTs conveying fluid were revealed by the numerical results. Compared with other methods, the SEM shows high accuracy and efficiency.
机译:在这项工作中,我们应用了光谱元素法(SEM)分析了流体传输单壁碳纳米管(SWCNT)的动力学特性。首先,基于非局部Timoshenko束理论推导了流体输送SWCNTs的动力学方程。然后,通过引入离散傅里叶变换,建立了光谱元素公式,用于流体传输SWCNT的自由/强迫振动分析。此外,使用几个比较示例对提出的方法进行了验证。最后,考虑了不同的内部流体速度和小尺度参数(SSP),通过SEM计算了简单支撑的流体输送SWCNT的固有频率和动态响应。数值结果揭示了流体速度和SSPs对SWCNTs输送流体动力学特性的影响。与其他方法相比,SEM具有较高的准确性和效率。

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