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Waste discharge concentration and Newtonian conditions influences on radiative three-dimensional magnetized flow of Jeffrey nanofluid

  • S. A. Shehzad,
  • S. Firdous,
  • S. Jagadeesha,
  • H. N. Fatima,
  • A. M. Jyothi,
  • G. Chandrashekara

摘要

Interaction of waste discharge concentration in hydromagnetized boundary-layer (BL) Jeffery non-Newtonian nanofluid is explored in the current article. The chemically reactive radiative bidirectional stretched sheet generates the hydromagnetized flow. Newtonian thermal and solutal conditions are implemented at the boundaries of sheet to address the practical behavior of energy and mass transportation. The basic assumptions of BL are implicated to execute the mathematical problem. The governing mathematical problem is first simplified into system of ordinary differential equations (ODEs) by the implementation of suitable similarity constraints. This mathematical model is treated by the utilization of numerical scheme namely SQCM (spectral quasi-linear collocation method. The resulted outcomes are plotted for multiple values of non-dimensional constraints on practically important quantities. Temperature \(\Theta (\eta )\) Θ ( η ) is enhanced remarkably against the higher Rd values. Thickness of thermal BL against higher Rd values is improved. The higher M values accelerate a decay in the velocities profiles, while an enhancement in thermal profiles and associated BL thickness is achieved. These findings are valuable for designing systems that require control over boundary layer thickness, such as in thermal regulation, magnetic braking, and fluid resistance management.