每年出版 4 期
ISSN 打印: 2151-4798
ISSN 在线: 2151-562X
Indexed in
FREE CONVECTIVE HEAT AND MASS TRANSFER FLOW OF HEAT-GENERATING NANOFLUID PAST A VERTICAL MOVING POROUS PLATE IN A CONDUCTING FIELD
摘要
In the present work a thorough study has been performed on free convective heat and mass transfer characteristics of heat-generating magneto-nanofluid flow through a vertical moving porous plate in a conducting field. The water-based nanofluid with the composition of copper is considered in this analysis. The governing equations of this study are solved by applying the finite-difference method. The influence of different parameters on fluid velocity, temperature, concentration, shear stress, rate of heat transfer, and rate of mass transfer are presented graphically and discussed. The present study is well supported by the verification of our results with previously published literature. The novelty of this study is the consideration of simultaneous occurrence of porous medium, radiation, heat source, and Soret effect. The velocity enhances for increasing values of porosity parameter for the stationary plate and forward-moving plate, whereas a reverse nature is noticed in the case of a backward-moving plate. The Sherwood number increases for rising values of Soret number and falling values of Schmidt number.
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