The contamination through the geological formation cannot move and disperse with the same speed and dispersion coefficient, respectively, due to the variability of the geological formation. This paper is therefore first devoted to the description of the hydrodynamic advection dispersion equation with the seepage velocity and dispersion coefficient as function of space and time. Secondly the equation is solved via two analytical techniques: the homotopy decomposition method and the differential transform method. The numerical simulations of the approximated solutions are presented
Analytical solutions of the advection-dispersion equation and related models are indispensable for p...
In this paper we have used the homotopy analysis method (HAM) to obtain solution of space-time fract...
Two methods for calculating two-dimensional hydrodynamic dispersion parameters by analyzing experime...
A two-dimensional model, which provides approximate description of time-dependent transport, is pres...
In this study, analytical models for predicting groundwater contamination in isotropic and homogeneo...
The transport mechanism of contaminated groundwater has been a problematic issue for many decades, m...
August 1971.Includes bibliographic references (pages 84-88).A general two-dimensional equation of di...
In this paper a time-splitting technique for the two-dimensional advection-dispersion equation is pr...
WOS: 000272563000003In this paper we present a reliable algorithm, the homotopy perturbation method,...
Solute transport in porous medium is affected by two parameters i.e : 1) average velocity of solute ...
Abstract: In this paper, Variational Homotopy Perturbation Method is employed to solve dispersion eq...
Demand has increased for analytical solutions to determine the velocities and dispersion coefficient...
The paper is dealing with dispersion, which is defined as the scattering of a particle cloud in spac...
The parallel plate geometry has been considered to analytically solve the advection \u2013 dispersio...
A numerical model for calculation of advective-diffusive transport of nonconservative substances in...
Analytical solutions of the advection-dispersion equation and related models are indispensable for p...
In this paper we have used the homotopy analysis method (HAM) to obtain solution of space-time fract...
Two methods for calculating two-dimensional hydrodynamic dispersion parameters by analyzing experime...
A two-dimensional model, which provides approximate description of time-dependent transport, is pres...
In this study, analytical models for predicting groundwater contamination in isotropic and homogeneo...
The transport mechanism of contaminated groundwater has been a problematic issue for many decades, m...
August 1971.Includes bibliographic references (pages 84-88).A general two-dimensional equation of di...
In this paper a time-splitting technique for the two-dimensional advection-dispersion equation is pr...
WOS: 000272563000003In this paper we present a reliable algorithm, the homotopy perturbation method,...
Solute transport in porous medium is affected by two parameters i.e : 1) average velocity of solute ...
Abstract: In this paper, Variational Homotopy Perturbation Method is employed to solve dispersion eq...
Demand has increased for analytical solutions to determine the velocities and dispersion coefficient...
The paper is dealing with dispersion, which is defined as the scattering of a particle cloud in spac...
The parallel plate geometry has been considered to analytically solve the advection \u2013 dispersio...
A numerical model for calculation of advective-diffusive transport of nonconservative substances in...
Analytical solutions of the advection-dispersion equation and related models are indispensable for p...
In this paper we have used the homotopy analysis method (HAM) to obtain solution of space-time fract...
Two methods for calculating two-dimensional hydrodynamic dispersion parameters by analyzing experime...