TY - JOUR
T1 - A stratified MHD flow of Eyring-Powell fluid containing gyrotactic microorganisms through a stretching sheet with mixed convection
AU - Al-Bossly, Afrah
AU - Alduais, Fuad S.
AU - Lone, Showkat Ahmad
AU - Almusawa, Musawa Yahya
AU - Saeed, Anwar
N1 - Publisher Copyright:
© 2023 Wiley-VCH GmbH.
PY - 2023/9
Y1 - 2023/9
N2 - The aim of this effort is to examine the steady, laminar, and incompressible flow of Eyring-Powell fluid containing gyrotactic microorganisms through a stratified stretching surface. For stabilizing the distributed nanoparticles through bioconvection, which is tempted by magnetic field and buoyancy forces, the microorganisms’ theory is utilized. The nonlinear system of equations is treated with a semi-analytical approach. Convergence of series solutions of the nonlinear system is displayed. The variations in momentum, concentration, thermal and motility distributions are exhibited graphically. Sherwood number, skin friction, motile density number, and Nusselt number are exhibited numerically in tabular forms. It has been found that the augmenting the thermal stratification, mass stratification, and motile density stratification factors have retarded the thermal, mass, and motile density of the microbes. Heightening Brownian motion, Schmidt number, and mass stratification parameter boost the Sherwood number, while reduces with thermophoresis constraint. The rise in concentration difference factor and Peclet number intensify the motile density number, while the accelerating values of stratification parameter of motile density and bioconvective Lewis number decline the motile density number.
AB - The aim of this effort is to examine the steady, laminar, and incompressible flow of Eyring-Powell fluid containing gyrotactic microorganisms through a stratified stretching surface. For stabilizing the distributed nanoparticles through bioconvection, which is tempted by magnetic field and buoyancy forces, the microorganisms’ theory is utilized. The nonlinear system of equations is treated with a semi-analytical approach. Convergence of series solutions of the nonlinear system is displayed. The variations in momentum, concentration, thermal and motility distributions are exhibited graphically. Sherwood number, skin friction, motile density number, and Nusselt number are exhibited numerically in tabular forms. It has been found that the augmenting the thermal stratification, mass stratification, and motile density stratification factors have retarded the thermal, mass, and motile density of the microbes. Heightening Brownian motion, Schmidt number, and mass stratification parameter boost the Sherwood number, while reduces with thermophoresis constraint. The rise in concentration difference factor and Peclet number intensify the motile density number, while the accelerating values of stratification parameter of motile density and bioconvective Lewis number decline the motile density number.
UR - http://www.scopus.com/inward/record.url?scp=85148285433&partnerID=8YFLogxK
U2 - 10.1002/zamm.202200492
DO - 10.1002/zamm.202200492
M3 - Article
AN - SCOPUS:85148285433
SN - 0044-2267
VL - 103
JO - ZAMM Zeitschrift fur Angewandte Mathematik und Mechanik
JF - ZAMM Zeitschrift fur Angewandte Mathematik und Mechanik
IS - 9
M1 - e202200492
ER -