AbstractThe aim of this article is to introduce a new analytical and approximate technique to obtain the solution of time-fractional Navier–Stokes equation in a tube. This proposed technique is the coupling of Adomian decomposition method (ADM) and Laplace transform method (LTM). We have consider the unsteady flow of a viscous fluid in a tube in which, besides time as one of the dependent variable, the velocity field is a function of only one space coordinate. A good agreement between the obtained solutions and some well-known results has been demonstrated. It is shown that the proposed method robust, efficient, and easy to implement for linear and nonlinear problems arising in science and engineering
In this study, solutions of time-space fractional partial differential equations(FPDEs) are obtained...
In this paper, a new approximate solution of time-fractional order multi-dimensional Navier–Stokes e...
AbstractIn this paper, a novel analytical method is proposed for differential equations with time-fr...
The aim of this article is to introduce a new analytical and approximate technique to obtain the sol...
AbstractIn this paper, we present a reliable algorithm based on the new homotopy perturbation transf...
In this paper, we present a reliable algorithm based on the new homotopy perturbation transform meth...
AbstractIn this paper, a new approximate solution of time-fractional order multi-dimensional Navier–...
This paper witnesses the coupling of two basic transforms: the He-Laplace transform (HLT) which is a...
AbstractA stabilized implicit fractional-step method for numerical solutions of the time-dependent N...
AbstractIn this paper, the Laplace decomposition method is employed to obtain approximate analytical...
AbstractIn this paper, a numerical algorithm based on a modified He-Laplace method (MHLM) is propose...
In this manuscript, a semianalytical solution of the time-fractional Navier-Stokes equation under Ca...
In this article, we introduce a new technique to create a series solution to the time-fractional Nav...
In this paper we find the solution of time fractional discrete Navier-Stokes equation using Adomian ...
AbstractIn this paper, the most effective methods, the homotopy perturbation method (HPM) and the di...
In this study, solutions of time-space fractional partial differential equations(FPDEs) are obtained...
In this paper, a new approximate solution of time-fractional order multi-dimensional Navier–Stokes e...
AbstractIn this paper, a novel analytical method is proposed for differential equations with time-fr...
The aim of this article is to introduce a new analytical and approximate technique to obtain the sol...
AbstractIn this paper, we present a reliable algorithm based on the new homotopy perturbation transf...
In this paper, we present a reliable algorithm based on the new homotopy perturbation transform meth...
AbstractIn this paper, a new approximate solution of time-fractional order multi-dimensional Navier–...
This paper witnesses the coupling of two basic transforms: the He-Laplace transform (HLT) which is a...
AbstractA stabilized implicit fractional-step method for numerical solutions of the time-dependent N...
AbstractIn this paper, the Laplace decomposition method is employed to obtain approximate analytical...
AbstractIn this paper, a numerical algorithm based on a modified He-Laplace method (MHLM) is propose...
In this manuscript, a semianalytical solution of the time-fractional Navier-Stokes equation under Ca...
In this article, we introduce a new technique to create a series solution to the time-fractional Nav...
In this paper we find the solution of time fractional discrete Navier-Stokes equation using Adomian ...
AbstractIn this paper, the most effective methods, the homotopy perturbation method (HPM) and the di...
In this study, solutions of time-space fractional partial differential equations(FPDEs) are obtained...
In this paper, a new approximate solution of time-fractional order multi-dimensional Navier–Stokes e...
AbstractIn this paper, a novel analytical method is proposed for differential equations with time-fr...