masterThesis
Modelagem Matemática e Computacional de fenômenos eletrocinéticos em meios porosos carregados eletricamente
Fecha
2013-08-05Registro en:
SILVA, Aldemir Cirilo da. Modelagem Matemática e Computacional de fenômenos eletrocinéticos em meios porosos carregados eletricamente. 2013. 84 f. Dissertação (Mestrado em Probabilidade e Estatística; Modelagem Matemática) - Universidade Federal do Rio Grande do Norte, Natal, 2013.
Autor
Silva, Aldemir Cirilo da
Resumen
In this work we present a mathematical and computational modeling of electrokinetic
phenomena in electrically charged porous medium. We consider the porous
medium composed of three different scales (nanoscopic, microscopic and macroscopic).
On the microscopic scale the domain is composed by a porous matrix and a solid phase.
The pores are filled with an aqueous phase consisting of ionic solutes fully diluted, and
the solid matrix consists of electrically charged particles.
Initially we present the mathematical model that governs the electrical double
layer in order to quantify the electric potential, electric charge density, ion adsorption
and chemical adsorption in nanoscopic scale. Then, we derive the microscopic model,
where the adsorption of ions due to the electric double layer and the reactions of protonation/
deprotanaç~ao and zeta potential obtained in modeling nanoscopic arise in microscopic
scale through interface conditions in the problem of Stokes and Nerst-Planck
equations respectively governing the movement of the aqueous solution and transport of
ions. We developed the process of upscaling the problem nano/microscopic using the
homogenization technique of periodic structures by deducing the macroscopic model with
their respectives cell problems for effective parameters of the macroscopic equations. Considering
a clayey porous medium consisting of kaolinite clay plates distributed parallel,
we rewrite the macroscopic model in a one-dimensional version.
Finally, using a sequential algorithm, we discretize the macroscopic model via
the finite element method, along with the interactive method of Picard for the nonlinear
terms. Numerical simulations on transient regime with variable pH in one-dimensional
case are obtained, aiming computational modeling of the electroremediation process of
clay soils contaminated