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Analytical solutions of higher-dimensional coupled system of nonlinear time-fractional diffusion-convection-wave equations

Publication Type : Journal Article

Publisher : World Scientific Pub Co Pte Ltd

Source : Modern Physics Letters B

Url : https://doi.org/10.1142/s021798492550006x

Campus : Amritapuri

School : School of Physical Sciences

Department : Mathematics

Year : 2024

Abstract : This paper discusses how to generalize the invariant subspace method for deriving the analytical solutions of the multi-component [Formula: see text]-dimensional coupled nonlinear time-fractional PDEs (NTFPDEs) in the sense of Caputo fractional-order derivative for the first time. Specifically, we describe how to systematically find different invariant product linear spaces with various dimensions for the considered system. Also, we observe that the obtained invariant product linear spaces help to reduce the multi-component [Formula: see text]-dimensional coupled NTFPDEs into a system of fractional-order ODEs, which can then be solved using the well-known analytical methods. More precisely, we illustrate the effectiveness and importance of this developed method for obtaining a long list of invariant product linear spaces for the multi-component [Formula: see text]-dimensional coupled nonlinear time-fractional diffusion-convection-wave equations. In addition, we have shown how to find different kinds of generalized separable analytical solutions for a multi-component [Formula: see text]-dimensional coupled nonlinear time-fractional diffusion-convection-wave equations along with the initial and boundary conditions using invariant product linear spaces obtained. Finally, we provide appropriate graphical representations of some of the derived generalized separable analytical solutions with various fractional-order values.

Cite this Research Publication : K. S. Priyendhu, P. Prakash, M. Lakshmanan, Analytical solutions of higher-dimensional coupled system of nonlinear time-fractional diffusion-convection-wave equations, Modern Physics Letters B, World Scientific Pub Co Pte Ltd, 2024, https://doi.org/10.1142/s021798492550006x

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