Fractional differential equations are powerful tools to model the non-locality and spatial heterogeneity evident in many real-world problems. Although numerous numerical methods have been proposed, most of them are limited to regular domains and uniform meshes. For irregular convex domains, the treatment of the space fractional derivative becomes more challenging and the general methods are no longer feasible. In this work, we propose a novel numerical technique based on the Galerkin finite element method (FEM) with an unstructured mesh to deal with the space fractional derivative on arbitrarily shaped convex and non-convex domains, which is the most original and significant contribution of this paper. Moreover, we present a second order fi...
In this paper, the two-dimensional distributed order space-fractional diffusion equation on an irreg...
In this paper, the two-dimensional distributed order space-fractional diffusion equation on an irreg...
In this paper, we use the finite element method (FEM) to solve the time-space fractional Bloch-Torre...
Fractional differential equations are powerful tools to model the non-locality and spatial heterogen...
Fractional differential equations are powerful tools to model the non-locality and spatial heterogen...
Models based on partial differential equations containing time–space fractional derivatives have att...
Models based on partial differential equations containing time–space fractional derivatives have att...
In magnetic resonance imaging of the human brain, the diffusion process of tissue water is considere...
In magnetic resonance imaging of the human brain, the diffusion process of tissue water is considere...
In this paper, we consider two-dimensional Riesz space fractional diffusion equations with nonlinear...
In this paper, we consider two-dimensional Riesz space fractional diffusion equations with nonlinear...
Most existing research on applying the finite element method to discretize space fractional operator...
Most existing research on applying the finite element method to discretize space fractional operator...
In this chapter, numerical methods for time-space fractional partial differential equations are pres...
Most existing research on applying the finite element method to discretize space fractional operator...
In this paper, the two-dimensional distributed order space-fractional diffusion equation on an irreg...
In this paper, the two-dimensional distributed order space-fractional diffusion equation on an irreg...
In this paper, we use the finite element method (FEM) to solve the time-space fractional Bloch-Torre...
Fractional differential equations are powerful tools to model the non-locality and spatial heterogen...
Fractional differential equations are powerful tools to model the non-locality and spatial heterogen...
Models based on partial differential equations containing time–space fractional derivatives have att...
Models based on partial differential equations containing time–space fractional derivatives have att...
In magnetic resonance imaging of the human brain, the diffusion process of tissue water is considere...
In magnetic resonance imaging of the human brain, the diffusion process of tissue water is considere...
In this paper, we consider two-dimensional Riesz space fractional diffusion equations with nonlinear...
In this paper, we consider two-dimensional Riesz space fractional diffusion equations with nonlinear...
Most existing research on applying the finite element method to discretize space fractional operator...
Most existing research on applying the finite element method to discretize space fractional operator...
In this chapter, numerical methods for time-space fractional partial differential equations are pres...
Most existing research on applying the finite element method to discretize space fractional operator...
In this paper, the two-dimensional distributed order space-fractional diffusion equation on an irreg...
In this paper, the two-dimensional distributed order space-fractional diffusion equation on an irreg...
In this paper, we use the finite element method (FEM) to solve the time-space fractional Bloch-Torre...