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Nonlinear vibration of fluid-conveying carbon nanotube using homotopy analysis method

机译:使用同型分析法的流体输送碳纳米管的非线性振动

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Nonlinear vibration analysis of a single-walled carbon nanotube, using the Eringen nonlocal elasticity and Euler-Bernoulli beam theories, is carried out. Pasternak-type foundation and the simply-supported boundary conditions are assumed for the carbon nanotube and the governing equation of motion is developed using those theories. The Galerkin method is utilized to obtain the nonlinear ordinary differential equation of vibration of the single-walled carbon nanotube and the homotopy analysis method is employed to determine its nonlinear natural frequency. A parametric sensitivity study is then carried out. Few of the parameters were the axial tension, nonlocal parameter, fluid velocity and the foundation stiffness. The parametric study is mainly focused on the nonlinear natural frequency of single-walled carbon nanotube. Finally, a numerical simulation is carried out to determine the accuracy of the obtained results. Furthermore, an elliptical integral is utilized to verify the nonlinear natural frequency, which was obtained using the homotopy analysis method.
机译:采用eringen非本体弹性和欧拉 - 伯努利光束理论进行单壁碳纳米管的非线性振动分析。 Pasternak型基础和简单地支持的边界条件被假定碳纳米管,并且使用这些理论开发了运动的控制方程。利用Galerkin方法来获得单壁碳纳米管的振动的非线性常微分方程,并且使用同型分析方法来确定其非线性自然频率。然后进行参数敏感性研究。少量参数是轴向张力,非本体参数,流体速度和基础刚度。参数研究主要集中在单壁碳纳米管的非线性固有频率上。最后,执行数值模拟以确定所获得的结果的准确性。此外,利用椭圆形积分来验证使用同型分析方法获得的非线性固有频率。

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