In this study, approximate solutions of a system of time-fractional coupled Burger equations were obtained by means of a local fractional operator (LFO) in the sense of the Caputo derivative. The LFO technique was built on the basis of the standard differential transform method (DTM). Illustrative examples used in demonstrating the effectiveness and robustness of the proposed method show that the solution method is very efficient and reliable as "“ unlike the variational iteration method "“ it does not depend on any process of identifying Lagrange multipliers, even while still maintaining accuracy
Taking into account the regularity properties of the solutions of fractional differential equations,...
In this paper, an analytic solution which has to do with the series expansion approach is proposed t...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
In this study, approximate solutions of a system of time-fractional coupled Burger equations were ob...
In this study, approximate solutions of a system of time-fractional coupled Burger equations were ob...
This paper presents a numerical scheme based on the Galerkin finite element method and cubic B-splin...
In this paper, the homotopy perturbation method is implemented to derive the explicit approximate so...
In this paper, we study the fractional differential operators thereby considering the space and time...
In this article, we have investigated the fractional-order Burgers equation via Natural decompositio...
In this paper we study Fractional Burger's Equation of the form ...
The study discusses the numerical solution for a time fractional Burgers’ equation using explicit (s...
AbstractIn this paper, a scheme is developed to study numerical solution of the space- and time-frac...
AbstractIn this paper, a novel algorithm based on Adomian decomposition for fractional differential ...
A very new technique, coupled fractional reduced differential transform, has been implemented to obt...
In this paper, we consider the time-fractional two-mode coupled Burgers equation with the Caputo fra...
Taking into account the regularity properties of the solutions of fractional differential equations,...
In this paper, an analytic solution which has to do with the series expansion approach is proposed t...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
In this study, approximate solutions of a system of time-fractional coupled Burger equations were ob...
In this study, approximate solutions of a system of time-fractional coupled Burger equations were ob...
This paper presents a numerical scheme based on the Galerkin finite element method and cubic B-splin...
In this paper, the homotopy perturbation method is implemented to derive the explicit approximate so...
In this paper, we study the fractional differential operators thereby considering the space and time...
In this article, we have investigated the fractional-order Burgers equation via Natural decompositio...
In this paper we study Fractional Burger's Equation of the form ...
The study discusses the numerical solution for a time fractional Burgers’ equation using explicit (s...
AbstractIn this paper, a scheme is developed to study numerical solution of the space- and time-frac...
AbstractIn this paper, a novel algorithm based on Adomian decomposition for fractional differential ...
A very new technique, coupled fractional reduced differential transform, has been implemented to obt...
In this paper, we consider the time-fractional two-mode coupled Burgers equation with the Caputo fra...
Taking into account the regularity properties of the solutions of fractional differential equations,...
In this paper, an analytic solution which has to do with the series expansion approach is proposed t...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...