TY - JOUR
T1 - Influence of Lorentz and permeability on migration of nanoparticle
AU - Ge-Jile, Hu
AU - Alawee, Wissam H.
AU - Nasir Dara, Rebwar
AU - Issakhov, Alibek
AU - Mohamed Selim, Mahmoud
AU - Reza Hajizadeh, Mohammed
N1 - Publisher Copyright:
© 2021 World Scientific Publishing Company.
PY - 2021/8
Y1 - 2021/8
N2 - To detect the influence of MHD on migration of hybrid nanopowders, CVFEM has been employed in this paper. Mixture of Fe3O4 and MWCNT was added in water and for calculating properties, experimental formulas were utilized. To increase the convective mode, porous media has been used and tank was experienced in the horizontal magnetic field. In governing equations, there exist two new terms, one for permeable media and the other for MHD effect. Such complex physics needs special numerical approach and CVFEM has been utilized for this goal. Final formulation of PDEs did not have pressure terms and the stream function scalar was introduced. As permeability of zone enhances, nanopowders can transfer faster and the interaction of them with wall enhances, so, Nusselt number augments as well as stream function. Besides, employing higher Ha, the force against the buoyancy force increases and the velocity of operating fluid declines which provides lower convective flow. With rise of Ha, stream function declines about 48% and Nu declines about 31.92% when Da=100. As Da rises, Nu rises about 33.43% when Ha=0. Augment of Rd leads to augmentation of Nu.
AB - To detect the influence of MHD on migration of hybrid nanopowders, CVFEM has been employed in this paper. Mixture of Fe3O4 and MWCNT was added in water and for calculating properties, experimental formulas were utilized. To increase the convective mode, porous media has been used and tank was experienced in the horizontal magnetic field. In governing equations, there exist two new terms, one for permeable media and the other for MHD effect. Such complex physics needs special numerical approach and CVFEM has been utilized for this goal. Final formulation of PDEs did not have pressure terms and the stream function scalar was introduced. As permeability of zone enhances, nanopowders can transfer faster and the interaction of them with wall enhances, so, Nusselt number augments as well as stream function. Besides, employing higher Ha, the force against the buoyancy force increases and the velocity of operating fluid declines which provides lower convective flow. With rise of Ha, stream function declines about 48% and Nu declines about 31.92% when Da=100. As Da rises, Nu rises about 33.43% when Ha=0. Augment of Rd leads to augmentation of Nu.
KW - convection
KW - hybrid nanopowder
KW - MHD
KW - Permeable zone
KW - radiation
UR - https://www.scopus.com/pages/publications/85104545710
U2 - 10.1142/S0129183121501047
DO - 10.1142/S0129183121501047
M3 - Article
AN - SCOPUS:85104545710
SN - 0129-1831
VL - 32
JO - International Journal of Modern Physics C
JF - International Journal of Modern Physics C
IS - 8
M1 - 2150104
ER -