Heat Transfer Analysis on Carboxymethyl Cellulose Water-Based Cross Hybrid Nanofluid Flow with Entropy Generation

The physical phenomena of convective flow of Cross fluid containing carboxymethyl cellulose water over a stretching sheet with convective heating were studied. Cross nanofluid containing Al2O3, Cu nanoparticles, and based fluid of CMC water is used. Entropy generation minimization is examined in the...

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Veröffentlicht in:Journal of nanomaterials 2022-01, Vol.2022 (1)
Hauptverfasser: Ali, F., Loganathan, K., Eswaramoorthi, S., Prabu, K., Zaib, A., Chaudhary, Dinesh Kumar
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Sprache:eng
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Zusammenfassung:The physical phenomena of convective flow of Cross fluid containing carboxymethyl cellulose water over a stretching sheet with convective heating were studied. Cross nanofluid containing Al2O3, Cu nanoparticles, and based fluid of CMC water is used. Entropy generation minimization is examined in the current analysis. The system of PDEs is altered into a set of ODEs through suitable conversion. Further, these equations are computed numerically through the MATLAB BVP4c technique. The behavior of governing parameters on the velocity, temperature, entropy generation, and Bejan number is plotted and reported via graphs. It is found that the larger value of unsteady variable reduced the velocity, thermal layer, and entropy production. Surface drag frication of the Al2O3 and Cu and Al2O3 + Cu is enhanced with the more presence of unsteady parameter. Comparison of current results in a limiting case is obtained with earlier analysis and found an optimum agreement.
ISSN:1687-4110
1687-4129
DOI:10.1155/2022/5252918