Computational Analysis of a one-dimensional nonlinear reactive contaminant flow with an initial continuous point source by homotopy-perturbation method.
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Date
2012-11-05
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Journal of the Nigerian Association of Mathematical Physics
Abstract
In this paper, a Homotopy-perturbation analysis of a non–linear reactive
contaminant flow equation with initial continuous point source is provided. The equation
is described by advection, diffusion and adsorption. We assume that the adsorption term
is modeled by Freudlich Isotherm. We provide an approximation of this equation using
homotopy-perturbation transformation and solve the resulting linear equations
analytically. The graphs of the concentration against the distance, reaction parameter
and time are presented and analyzed to determine the effects of increase in the reaction
coefficient, time and distance on the concentration. Findings from this research show
that the concentration of the contaminant decreases with time and decreases faster when
the value of the reaction parameter α is high.
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Keywords
Homotopy-perturbation, contaminant, advection, diffusion, adsorption, reaction