AbstractThe methodology and numerical solution of problems concerning transport processes via the method of differential quadrature are presented. Application of the method is demonstrated by solving a simple one-dimensional, time-dependent (transient) diffusion process involving an irreversible reaction without any flux across the end boundary. In addition, the same technique is used (for the first time to the authors' knowledge) to solve a steady-state problem. For this purpose, a convection-diffusion problem involving an irreversible reaction is considered. The demonstration is carried out in two ways, (1) using the Bellman et al. technique which employs approximation formulas for higher order partial derivatives derived by iterating the...
The numerical solution of linear and nonlinear partial differential equations plays a prominent rol...
In this study, trigonometric cubic B-spline differential quadrature method is developed for a linear...
ABSTRACT In this paper, two different numerical schemes, namely the Runge-Kutta fourth order method ...
AbstractThe methodology and numerical solution of problems concerning transport processes via the me...
AbstractNumerical solutions to transient nonlinear diffusion problems are obtained by the method of ...
AbstractThe technique of differential quadrature for the solution of partial differential equations,...
In this work, accurate solutions to linear and nonlinear diffusion equations were introduced. A poly...
In this work, accurate solutions to linear and nonlinear diffusion equations were introduced. A poly...
In this work, accurate solutions to linear and nonlinear diffusion equations were introduced. A poly...
Abstract-- In this paper, a hybrid technique of differential quadrature method and Runge-Kutta fourt...
The heat- and mass-transfer equations have an important role in various thermal and diffusion proces...
Coupled advection-diffusion-reaction systems attracted much attention in the last years, because the...
Coupled advection-diffusion-reaction systems attracted much attention in the last years, because the...
none3siCoupled advection-diffusion-reaction systems attracted much attention in the last years, beca...
This paper presents the combined application of differential quadrature method (DQM) and finite-diff...
The numerical solution of linear and nonlinear partial differential equations plays a prominent rol...
In this study, trigonometric cubic B-spline differential quadrature method is developed for a linear...
ABSTRACT In this paper, two different numerical schemes, namely the Runge-Kutta fourth order method ...
AbstractThe methodology and numerical solution of problems concerning transport processes via the me...
AbstractNumerical solutions to transient nonlinear diffusion problems are obtained by the method of ...
AbstractThe technique of differential quadrature for the solution of partial differential equations,...
In this work, accurate solutions to linear and nonlinear diffusion equations were introduced. A poly...
In this work, accurate solutions to linear and nonlinear diffusion equations were introduced. A poly...
In this work, accurate solutions to linear and nonlinear diffusion equations were introduced. A poly...
Abstract-- In this paper, a hybrid technique of differential quadrature method and Runge-Kutta fourt...
The heat- and mass-transfer equations have an important role in various thermal and diffusion proces...
Coupled advection-diffusion-reaction systems attracted much attention in the last years, because the...
Coupled advection-diffusion-reaction systems attracted much attention in the last years, because the...
none3siCoupled advection-diffusion-reaction systems attracted much attention in the last years, beca...
This paper presents the combined application of differential quadrature method (DQM) and finite-diff...
The numerical solution of linear and nonlinear partial differential equations plays a prominent rol...
In this study, trigonometric cubic B-spline differential quadrature method is developed for a linear...
ABSTRACT In this paper, two different numerical schemes, namely the Runge-Kutta fourth order method ...