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首页> 外文期刊>Microfluidics and nanofluidics >Nonlocal vibration and instability analysis of carbon nanotubes conveying fluid considering the influences of nanoflow and non-uniform velocity profile
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Nonlocal vibration and instability analysis of carbon nanotubes conveying fluid considering the influences of nanoflow and non-uniform velocity profile

机译:考虑纳米流和非均匀速度剖面影响的碳纳米管输运流体的非局部振动和不稳定性分析

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摘要

In this article, the influences of non-uniform velocity profile attributable to slip boundary condition and viscosity of fluid on the dynamic instability of carbon nanotubes (CNTs) conveying fluid are investigated. The nonlocal elasticity theory and the Euler-Bernoulli beam theory are employed to derive partial differential equation of nanotubes conveying fluid. Furthermore, a dimensionless momentum correction factor (MCF) is obtained as a function of Knudsen number (Kn) so as to insert the effects of non-uniform velocity profile into the equation of motion. In continuation, complex eigen-frequencies of the system are attained with respect to different boundary conditions, the momentum correction factor, slip boundary condition and nonlocal parameter. The results delineate that considering the effects of non-uniform velocity profile could diminish predicted critical velocity of flow. Therefore, the divergence instability occurs in the lower values of flow velocity. In addition, the MCF decreases through enhancement of Kn; hence, the effects of non-uniform velocity profile are more noticeable for liquid fluid than gas fluid.
机译:本文研究了滑移边界条件和流体粘度引起的非均匀速度分布对碳纳米管(CNTs)输送流体动力不稳定性的影响。利用非局部弹性理论和欧拉-伯努利梁理论推导了输液纳米管的偏微分方程。此外,获得了无量纲的动量校正因子(MCF)作为克努森数(Kn)的函数,以便将非均匀速度分布的影响插入运动方程中。接着,针对不同的边界条件,动量校正因子,滑移边界条件和非局部参数,获得了系统的复杂特征频率。结果表明,考虑非均匀速度分布的影响可能会减小预测的临界流速。因此,在较低的流速值中会出现发散不稳定性。另外,MCF通过增加Kn而降低;因此,对于液体流体,非均匀速度分布的影响比气体流体更为明显。

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