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首页> 外文期刊>International journal of nonlinear sciences and numerical simulation >Nonlinear Wave Modulation in Nanorods Using Nonlocal Elasticity Theory
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Nonlinear Wave Modulation in Nanorods Using Nonlocal Elasticity Theory

机译:非识别弹性理论纳米棒中的非线性波调制

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In this study, nonlinear wave modulation in nanorods is examined on the basis of nonlocal elasticity theory. Eringen's nonlocal elasticity theory is employed to derive nonlinear equations for the motion of nanorods. The analysis of the modulation of axial waves in nonlocal elastic media is performed, and the reductive perturbation method is used for the solution of the nonlinear equations. The propagation of weakly nonlinear and strongly dispersive waves is investigated, and the nonlinear Schrodinger (NLS) equation is acquired as an evolution equation. For the purpose of a numerical investigation of the nonlocal impacts on the NLS equation, it has been investigated whether envelope solitary wave solutions exist by utilizing the physical and geometric features of the carbon nanotubes. Amplitude dependent wave frequencies, phase and group velocities have been obtained and they have compared for the linear local, the linear nonlocal, the nonlinear local and the nonlinear nonlocal cases.
机译:在该研究中,基于非识别弹性理论检查纳米棒中的非线性波调制。 eringen的非局部弹性理论用于导出用于纳米棒的运动的非线性方程。 执行对非局部弹性介质中轴向波的调制分析,并且还原性扰动方法用于非线性方程的溶液。 研究了弱非线性和强色散波的传播,并且获得了非线性薛定指(NLS)等式作为演化方程。 为了对NLS方程对非识别射击的数值研究,已经研究了通过利用碳纳米管的物理和几何特征来存在包络孤立波解。 已经获得了幅度相关波频率,相位和群速度,并且它们已经比较了线性局部,线性非函数,非线性局部和非线性非本地情况。

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