Electrohydrodynamic Dispersion with Interphase Mass Transfer in a Poorly Conducting Couple Stress Fluid Bounded by Porous Layers

Exact analysis of miscible dispersion of solute with interphase mass transfer in a poorly conducting couple stress fluid flowing through a rectangular channel bounded by porous layers is considered because of its application in many practical situations. The generalized dispersion model of Sankara...

Full description

Bibliographic Details
Main Authors: N. Rudraiah, Mallika K S, Sujatha Nagaraja
Format: Article
Language:English
Published: Isfahan University of Technology 2016-01-01
Series:Journal of Applied Fluid Mechanics
Subjects:
Online Access:http://jafmonline.net/JournalArchive/download?file_ID=38961&issue_ID=224
id doaj-49a9b322c6cd46d0b6c1e3c4d5456368
record_format Article
spelling doaj-49a9b322c6cd46d0b6c1e3c4d54563682020-11-25T01:33:51ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722016-01-01917181.Electrohydrodynamic Dispersion with Interphase Mass Transfer in a Poorly Conducting Couple Stress Fluid Bounded by Porous LayersN. RudraiahMallika K S0Sujatha Nagaraja1global academy of technologyBMS College of MathematicsExact analysis of miscible dispersion of solute with interphase mass transfer in a poorly conducting couple stress fluid flowing through a rectangular channel bounded by porous layers is considered because of its application in many practical situations. The generalized dispersion model of Sankarasubramanian and Gill is used, which brings into focus the exchange coefficient, the convective coefficient and the dispersion coefficient. The exchange coefficient comes into picture due to the interphase mass transfer and independent of solvent fluid viscosity. It is observed that the convective coefficient increases with an increase in the porous parameter while it decreases with an increase in the couple stress parameter. The dispersion coefficient is plotted against wall reaction parameter for different values of porous parameter and couple stress parameter. It is noted that the dispersion coefficient decreases with an increase in the value of couple stress parameter but increases with porous parameter.http://jafmonline.net/JournalArchive/download?file_ID=38961&issue_ID=224Poorly conducting fluid; Generalised dispersion; Interphase mass transfer; Couple stress fluid.
collection DOAJ
language English
format Article
sources DOAJ
author N. Rudraiah
Mallika K S
Sujatha Nagaraja
spellingShingle N. Rudraiah
Mallika K S
Sujatha Nagaraja
Electrohydrodynamic Dispersion with Interphase Mass Transfer in a Poorly Conducting Couple Stress Fluid Bounded by Porous Layers
Journal of Applied Fluid Mechanics
Poorly conducting fluid; Generalised dispersion; Interphase mass transfer; Couple stress fluid.
author_facet N. Rudraiah
Mallika K S
Sujatha Nagaraja
author_sort N. Rudraiah
title Electrohydrodynamic Dispersion with Interphase Mass Transfer in a Poorly Conducting Couple Stress Fluid Bounded by Porous Layers
title_short Electrohydrodynamic Dispersion with Interphase Mass Transfer in a Poorly Conducting Couple Stress Fluid Bounded by Porous Layers
title_full Electrohydrodynamic Dispersion with Interphase Mass Transfer in a Poorly Conducting Couple Stress Fluid Bounded by Porous Layers
title_fullStr Electrohydrodynamic Dispersion with Interphase Mass Transfer in a Poorly Conducting Couple Stress Fluid Bounded by Porous Layers
title_full_unstemmed Electrohydrodynamic Dispersion with Interphase Mass Transfer in a Poorly Conducting Couple Stress Fluid Bounded by Porous Layers
title_sort electrohydrodynamic dispersion with interphase mass transfer in a poorly conducting couple stress fluid bounded by porous layers
publisher Isfahan University of Technology
series Journal of Applied Fluid Mechanics
issn 1735-3572
publishDate 2016-01-01
description Exact analysis of miscible dispersion of solute with interphase mass transfer in a poorly conducting couple stress fluid flowing through a rectangular channel bounded by porous layers is considered because of its application in many practical situations. The generalized dispersion model of Sankarasubramanian and Gill is used, which brings into focus the exchange coefficient, the convective coefficient and the dispersion coefficient. The exchange coefficient comes into picture due to the interphase mass transfer and independent of solvent fluid viscosity. It is observed that the convective coefficient increases with an increase in the porous parameter while it decreases with an increase in the couple stress parameter. The dispersion coefficient is plotted against wall reaction parameter for different values of porous parameter and couple stress parameter. It is noted that the dispersion coefficient decreases with an increase in the value of couple stress parameter but increases with porous parameter.
topic Poorly conducting fluid; Generalised dispersion; Interphase mass transfer; Couple stress fluid.
url http://jafmonline.net/JournalArchive/download?file_ID=38961&issue_ID=224
work_keys_str_mv AT nrudraiah electrohydrodynamicdispersionwithinterphasemasstransferinapoorlyconductingcouplestressfluidboundedbyporouslayers
AT mallikaks electrohydrodynamicdispersionwithinterphasemasstransferinapoorlyconductingcouplestressfluidboundedbyporouslayers
AT sujathanagaraja electrohydrodynamicdispersionwithinterphasemasstransferinapoorlyconductingcouplestressfluidboundedbyporouslayers
_version_ 1725075335444168704