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Can I read Entropy optimization in hybrid radiative nanofluid (CH3OH + SiO2 + Al2O3) flow by a curved stretching sheet with cross-diffusion effects on EtoBox?

Entropy optimization in hybrid radiative nanofluid (CH3OH + SiO2 + Al2O3) flow by a curved stretching sheet with cross-diffusion effects by G. Revathi; V. S. Sajja; M. J. Babu; C. S. K. Raju; S. A. Shehzad; C. Bapanayya is a Materials Science article available to read on EtoBox.

What is Entropy optimization in hybrid radiative nanofluid (CH3OH + SiO2 + Al2O3) flow by a curved stretching sheet with cross-diffusion effects about?

Compared to (pure) methanol, methanol-based nanofluids are more effective in several aspects like thermophysical properties. For example, specific heat and thermal conductivity are increased at higher temperature. Researchers experimentally discovered that methanol-based hybrid nanofluid ( CH 3 OH + SiO 2 + Al 2 O 3 ) is useful to enhance the absorption rate of CO 2 in a tray column absorber. Despite numerous reports on hybrid nanofluid via curved stretching sheet, so far, no work is done on the impact of increasing Brinkman number, activation energy on the dynamics of methanol conveying silica and alumina when thermal radiation and cross-diffusion effects are profoundly significant. In the present paper, the examination of methanol-based hybrid fluid flow across a bended (curved) stretching sheet with cross-diffusion effects (Soret-Dufour numbers) and activation energy is made. An analysis of entropy generation on the fluid flow is also visualized. Suitable similarity transformations are applied to modify the leading equations as nonlinear ODEqns. Shooting procedure (R-K 4th order based) is performed to unriddle the consequent equations. Outcomes are explicated via graphs in two c

Who reads Entropy optimization in hybrid radiative nanofluid (CH3OH + SiO2 + Al2O3) flow by a curved stretching sheet with cross-diffusion effects?

It is typically read by researchers, students, and practitioners in Materials Science.

Author
G. Revathi; V. S. Sajja; M. J. Babu; C. S. K. Raju; S. A. Shehzad; C. Bapanayya
Publisher
Springer Science and Business Media LLC
Published
2021
Language
EN
Field
Materials Science (Physical Sciences)

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