Significance of Double Diffusion for Unsteady Carreau Micropolar Nanofluid Transportation Across an Extending Sheet With Thermo-Radiation and Uniform Heat Source

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Abstract

The main objective of this manuscript is to glance into the assets of nanoparticles in the stream of generalized micropolar fluid and Carreau fluid against an intensified elongated surface. In order to assess, the heat and mass diffusion occurrences, the Cattaneo-Christov implications are also experienced in the temperature and concentration computations. In contrast to prior studies, rheological attributes on non-Newtonian fluids are depicted by engaging micropolar fluid and Carreau liquid that reflect a clear difference of transport phenomena. By minimizing the number of independent factors, the regulating equations are transmuted into non-dimensional types, that are then tackled numerically using the RK-4 algorithm along with the shooting strategy. For velocity, micro-rotation, temperature and concentration distributions, a visualization evaluation of the entangled flow parameters is executed. It has been revealed that expanding magnetic and micropolar constraints enhance micro-rotation velocity. The unsteadiness parameter enhances all three physical quantities, surface drag force, Nusselt number, and Sherwood number.

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Keywords

Carreau Fluid, Nanofluid, Micropolar Fluid, Magnetohydrodynamics, Double Diffusion, Runge-Kutta Scheme, Double diffusion, Heat Transfer Enhancement in Nanofluids, Thermophoresis, Turbulent Flows and Vortex Dynamics, Biomedical Engineering, Computational Mechanics, Carreau fluid, FOS: Mechanical engineering, Nanofluid, FOS: Medical engineering, Mechanics, 530, Reynolds number, Nanofluids, Diffusion, Magnetohydrodynamics, Engineering, Engineering::Mechanical engineering, Heat transfer, Solar Air Heater Heat Transfer Analysis, Carreau Fluid, Mechanical Engineering, Physics, Non-Newtonian fluid, Micropolar fluid, Engineering (General). Civil engineering (General), Materials science, 620, Drag, Turbulence, Runge-Kutta scheme, Sherwood number, Physical Sciences, :Mechanical engineering [Engineering], Thermodynamics, TA1-2040, Rheology, Nusselt number

Fields of Science

02 engineering and technology, 01 natural sciences, 0103 physical sciences, 0210 nano-technology

Citation

Afzal, Saima...at all (2021). "Significance of double diffusion for unsteady Carreau micropolar nanofluid transportation across an extending sheet with thermo-radiation and uniform heat source", Case Studies in Thermal Engineering, Vol. 28.

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20

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28

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101397

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CrossRef : 22

Scopus : 23

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23

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23

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4

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