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首页> 外文期刊>Microfluidics and nanofluidics >Nonlinear thermal-mechanical vibration of flow-conveying double-walled carbon nanotubes subjected to random material property
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Nonlinear thermal-mechanical vibration of flow-conveying double-walled carbon nanotubes subjected to random material property

机译:具有随机材料特性的双壁碳纳米管的非线性传热力学振动

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摘要

The present study deals with the dynamic response variability of nonlinear thermal-mechanical vibration of the fluid-conveying double-walled carbon nanotubes (DWCNTs) by considering the effects of the temperature change, geometric nonlinearity and nonlinearity of van der Waals (vdW) force. The nonlinear governing equations of the fluid-conveying DWCNTs are derived based on the Hamilton's principle and theory of thermal elasticity. The Young's modulus of elasticity of the DWCNTs is assumed as stochastic with respect to position to actually describe the random material property of the DWCNTs. By utilizing the Monte Carlo simulation, the nonlinear coupled governing equations of the fluid-conveying DWCNTs become deterministic. Then we adopt the harmonic balance method in conjunction with Galerkin's method to solve the nonlinear coupled deterministic differential equations for many different sample functions. Some statistical dynamic response of the DWCNTs such as the mean values and standard deviations (SDs) of the amplitude of the displacement are calculated, meanwhile the effects of the temperature change and flow velocity on the statistical dynamic response of the DWCNTs are investigated. It is concluded that the mean value and SD of the amplitude of the displacement increase nonlinearly with the increase of the frequencies in both low and high temperatures. Furthermore, the mean value of the amplitude of the displacement for any fixed frequency decreases due to the temperature change in low temperature; on the contrary, it increases under the temperature change in high temperature.
机译:本研究通过考虑温度变化,几何非线性和范德华力(vdW)力的影响来处理流体传输双壁碳纳米管(DWCNT)的非线性热机械振动的动态响应变化。基于汉密尔顿原理和热弹性理论,推导了流体传输DWCNT的非线性控制方程。假定DWCNT的杨氏弹性模量相对于位置是随机的,以实际描述DWCNT的随机材料特性。通过使用蒙特卡洛模拟,流体传输DWCNT的非线性耦合控制方程变得确定。然后,我们采用谐波平衡法和Galerkin方法相结合,对许多不同样本函数求解非线性耦合确定性微分方程。计算了DWCNT的一些统计动态响应,例如位移幅度的平均值和标准偏差(SDs),同时研究了温度变化和流速对DWCNT的统计动态响应的影响。结论是,在低温和高温下,位移的平均值和SD均随频率的增加而非线性增加。此外,由于低温下的温度变化,对于任何固定频率的位移幅度的平均值减小;相反,它在高温下随温度变化而增加。

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