Subdiffusion equations with distributed-order fractional derivatives describe some important physical phenomena. In this paper, we consider the time distributed-order and Riesz space fractional diffusions on bounded domains with Dirichlet boundary conditions. Here, the time derivative is defined as the distributed-order fractional derivative in the Caputo sense, and the space derivative is defined as the Riesz fractional derivative. First, we discretize the integral term in the time distributed-order and Riesz space fractional diffusions using numerical approximation. Then the given equation can be written as a multi-term time–space fractional diffusion. Secondly, we propose an implicit difference method for the multi-term time–space fracti...
We consider a space-time fractional diffusion equation on a finite domain. The equation is obtained ...
AbstractFractional derivatives can be used to model time delays in a diffusion process. When the ord...
In recent years, considerable attention has been devoted to distributed-order differential equations...
Subdiffusion equations with distributed-order fractional derivatives describe some important physica...
Subdiffusion equations with distributed-order fractional derivatives describe some important physica...
Subdiffusion equations with distributed-order fractional derivatives describe some important physica...
In this paper we are concerned with the numerical solution of a diffusion equation in which the time...
Sem PDFIn this paper we are concerned with the numerical solution of a diffusion equation in which t...
AbstractFractional derivatives can be used to model time delays in a diffusion process. When the ord...
Fractional derivatives can be used to model time delays in a diffusion process. When the order of th...
Fractional derivatives can be used to model time delays in a diffusion process. When the order of th...
We consider a space-time fractional diffusion equation on a finite domain. The equation is obtained ...
We consider a space-time fractional diffusion equation on a finite domain. The equation is obtained ...
We consider a space-time fractional diffusion equation on a finite domain. The equation is obtained ...
We consider a space-time fractional diffusion equation on a finite domain. The equation is obtained ...
We consider a space-time fractional diffusion equation on a finite domain. The equation is obtained ...
AbstractFractional derivatives can be used to model time delays in a diffusion process. When the ord...
In recent years, considerable attention has been devoted to distributed-order differential equations...
Subdiffusion equations with distributed-order fractional derivatives describe some important physica...
Subdiffusion equations with distributed-order fractional derivatives describe some important physica...
Subdiffusion equations with distributed-order fractional derivatives describe some important physica...
In this paper we are concerned with the numerical solution of a diffusion equation in which the time...
Sem PDFIn this paper we are concerned with the numerical solution of a diffusion equation in which t...
AbstractFractional derivatives can be used to model time delays in a diffusion process. When the ord...
Fractional derivatives can be used to model time delays in a diffusion process. When the order of th...
Fractional derivatives can be used to model time delays in a diffusion process. When the order of th...
We consider a space-time fractional diffusion equation on a finite domain. The equation is obtained ...
We consider a space-time fractional diffusion equation on a finite domain. The equation is obtained ...
We consider a space-time fractional diffusion equation on a finite domain. The equation is obtained ...
We consider a space-time fractional diffusion equation on a finite domain. The equation is obtained ...
We consider a space-time fractional diffusion equation on a finite domain. The equation is obtained ...
AbstractFractional derivatives can be used to model time delays in a diffusion process. When the ord...
In recent years, considerable attention has been devoted to distributed-order differential equations...