In this paper we intend to establish fast numerical approaches to solve a class of initial-boundary problem of time-space fractional convection-diffusion equations. We present a new unconditionally stable implicit difference method, which is derived from the weighted and shifted Grunwald formula, and converges with the second-order accuracy in both time and space variables. Then, we show that the discretizations lead to Toeplitz-like systems of linear equations that can be efficiently solved by Krylov subspace solvers with suitable circulant preconditioners. Each time level of these methods reduces the memory requirement of the proposed implicit difference scheme from O(N-2) to O(N) and the computational complexity from O(N-3) to O(N log N)...
In this paper, we develop two fast implicit difference schemes for solving a class of variable-coeff...
In this paper, we concentrate on the efficient solvers for the time-space fractional advection-diffu...
AbstractBased on domain decomposition and multi-layer explicit computation technique, one new explic...
In this paper we intend to establish fast numerical approaches to solve a class of initial-boundary ...
In this paper we intend to establish fast numerical approaches to solve a class of initial-boundary ...
In this paper, we develop two fast implicit difference schemes for solving a class of variable-coeff...
In this paper, we develop two fast implicit difference schemes for solving a class of variable-coeff...
In this paper, we develop two fast implicit difference schemes for solving a class of variable-coeff...
In this article, we first propose an unconditionally stable implicit difference scheme for solving g...
In this article, we first propose an unconditionally stable implicit difference scheme for solving g...
We analyze a second-order accurate finite difference method for a spatially periodic convection-diff...
We analyze a second-order in space, first-order in time accurate finite difference method for a spat...
In this paper, we propose a semi-implicit difference scheme for solving one-dimensional nonlinear sp...
AbstractIn this article, we analyze the fractional step θ-method for the time-dependent convection–d...
In this paper, we develop two fast implicit difference schemes for solving a class of variable-coeff...
In this paper, we develop two fast implicit difference schemes for solving a class of variable-coeff...
In this paper, we concentrate on the efficient solvers for the time-space fractional advection-diffu...
AbstractBased on domain decomposition and multi-layer explicit computation technique, one new explic...
In this paper we intend to establish fast numerical approaches to solve a class of initial-boundary ...
In this paper we intend to establish fast numerical approaches to solve a class of initial-boundary ...
In this paper, we develop two fast implicit difference schemes for solving a class of variable-coeff...
In this paper, we develop two fast implicit difference schemes for solving a class of variable-coeff...
In this paper, we develop two fast implicit difference schemes for solving a class of variable-coeff...
In this article, we first propose an unconditionally stable implicit difference scheme for solving g...
In this article, we first propose an unconditionally stable implicit difference scheme for solving g...
We analyze a second-order accurate finite difference method for a spatially periodic convection-diff...
We analyze a second-order in space, first-order in time accurate finite difference method for a spat...
In this paper, we propose a semi-implicit difference scheme for solving one-dimensional nonlinear sp...
AbstractIn this article, we analyze the fractional step θ-method for the time-dependent convection–d...
In this paper, we develop two fast implicit difference schemes for solving a class of variable-coeff...
In this paper, we develop two fast implicit difference schemes for solving a class of variable-coeff...
In this paper, we concentrate on the efficient solvers for the time-space fractional advection-diffu...
AbstractBased on domain decomposition and multi-layer explicit computation technique, one new explic...