Radiation And Chemical Reaction Effects On Convective Heat And Mass Transfer Flow Of Nanofluids
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Abstract
This thesis delves into the thermal dynamics and species diffusion in nano and hybrid
newlinenanofluids via different channels, such as micro-channels, micro eccentric cylinders,
newlinetwo-region, and parallel plate channels. It will also examine the intricate interactions of
newlineNewtonian and non-Newtonian nanofluids under the influence of chemical reactions
newlineand thermal radiation. The techniques of regular perturbation, Caputo Fabrizio
newlinefractional derivative, and bvp4c are employed to solve the modeled governing
newlineequations. The graphical solutions are used to examine the results. The impacts of
newlinechemical reaction parameter, thermal Grashof number, Darcy parameter,
newlinesuction/injection, solute Grashof number, Eckert number, thermal radiation parameter,
newlineradiation absorption, Debye length, and Magnetic field parameter on flow and derived
newlinequantities are also studied. Furthermore, the outcomes obtained will shed light on the
newlinefundamental understanding of these phenomena and provide valuable insights into their
newlinepractical applications, bridging both industrial and biomedical domains.
newline