期刊论文详细信息
International Journal for Computational Civil and Structural Engineering
NUMERICAL ANALYSIS OF NON-LINEAR VIBRATIONS OF A FRACTIONALLY DAMPED CYLINDRICAL SHELL UNDER THE ADDITIVE COMBINATIONAL INTERNAL RESONANCE
Basem Ajarmah1  Marina V. Shitikova2 
[1] Al-istiqlal University Jericho, Palestine;Voronezh State Technical University, Research Center on Dynamics of Solids and Structures, Voronezh, RUSSIA;
关键词: cylindrical shell, free nonlinear damped vibrations, additive combinational internal resonance, method of multiple time scales, multi-term fractional differential equations;   
DOI  :  10.22337/2587-9618-2018-14-4-42-58
来源: DOAJ
【 摘 要 】

Non-linear damped vibrations of a cylindrical shell subjected to the additive type combinational internal resonance are investigated numerically using two different numerical methods. The damping features of the surrounding medium are described by the fractional derivative Kelvin-Voigt model involving the Riemann-Liouville fractional derivatives. Within the first method, the generalized displacements of a coupled set of nonlinear ordinary differential are estimated using numerical solution of nonlinear multi-term fractional differential equations by the procedure based on the reduction of the problem to a system of fractional differential equations. According to the second method, the amplitudes and phases of nonlinear vibrations are estimated from the governing nonlinear differential equations describing amplitude-and-phase modulations for the case of the additive combinational internal resonance. A good agreement in results is declared

【 授权许可】

Unknown   

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