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- W3109569894 abstract "The aim of this work is to analyze the effect of the residual surface stress on the dynamic instability of the fluid conveying double-walled nanotubes (DWNTs). To achieve this goal, the theory of surface effect, nonlocal elasticity and nonlinear von Karman theory are combined which lead to new insight in bifurcations of fluid conveying DWNTs. The conveying fluid is also modeled and analyzed based on modified Navier–Stokes relation considering Knudsen number. In addition, Galerkin technique and multiple time scales method is applied to solve the equation. By means of the bifurcation analysis, it is shown that a discontinuous bifurcation is always accompanied by a jump. Finally, stable and unstable regions in dynamic instability of DWNTs are addressed. We close this paper by stating that the residual surface stress enhances the stiffness of DWNTs. Furthermore, the results indicate and emphasize that the nanofluid velocity as an external excitation can significantly affect the instability behaviors of the system." @default.
- W3109569894 created "2020-12-07" @default.
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- W3109569894 date "2021-04-01" @default.
- W3109569894 modified "2023-10-13" @default.
- W3109569894 title "Nonlinear dynamics of fluid conveying double-walled nanotubes incorporating surface effect: A bifurcation analysis" @default.
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- W3109569894 doi "https://doi.org/10.1016/j.apm.2020.11.033" @default.
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