Linear and quadratic convection significance on the dynamics of MHD Maxwell fluid subject to stretched surface
نویسندگان
چکیده
The heat transmission process is a prominent issue in current technology. It occurs when there temperature variation between physical processes. has several uses advanced industry and engineering, including power generation nuclear reactor cooling. This study addresses Maxwell fluid’s steady, two-dimensional boundary layer stream across linearly stretched sheet. primary objective of this research to investigate the impact non-Newtonian fluid parameter (Deborah number) on flow behavior. secondary effect linear quadratic convection check which model gives higher transfer. caused by surface stretching. mathematical containing underlying partial differential equations (PDEs) built using estimations. governing are modified set nonlinear ordinary (ODEs) similarity variables. bvp4c approach employed tackle transformed system mathematically. impacts numerous parameters like stretching coefficient, mixed convective parameter, source/sink magnetic variable thermal conductance, Prandtl number, Deborah number over dimensionless velocity curves analyzed via graphs calculated tables. After confirming present findings with earlier studies, great symmetry shown. show that gains more transport rate than model, ultimately giving larger thickness. Some numeric illustrate boosting coefficient elevates motion, causing an opposite phenomenon Lorentz force because free exceeds velocity.
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ژورنال
عنوان ژورنال: Frontiers in Physics
سال: 2022
ISSN: ['2296-424X']
DOI: https://doi.org/10.3389/fphy.2022.974681