Study On The Heat And Mass Transport Of Non Newton
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Date
2021
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Library Information Services, COMSATS University Islamabad, Lahore Campus
Abstract
This study investigates heat and mass transport phenomena in non-Newtonian fluid flow under various physical effects. The analysis focuses on the behavior of complex fluids whose viscosity depends on shear rate, temperature, and concentration gradients. Governing nonlinear partial differential equations describing momentum, energy, and species concentration are formulated for the system. Appropriate similarity transformations are employed to reduce the governing equations, which are then solved using analytical and numerical techniques. The effects of key parameters such as thermal conductivity, diffusion rate, and non-Newtonian fluid characteristics on heat and mass transfer rates are examined in detail. The results highlight significant deviations from Newtonian behavior and provide insights relevant to industrial processes, chemical engineering, and thermal systems involving complex fluids.
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Department of Mathematics, FA19, Mathematics, Non-Newtonian Fluid, Heat Transfer, Mass Transport, Boundary Layer Flow, Dr. Mohsan Hassan