| Literature DB >> 32144369 |
Iskander Tlili1,2, Hossam A Nabwey3,4, G P Ashwinkumar5, N Sandeep6.
Abstract
A 3-D magnetohydrodynamic flow of hybrid nanofluid across a stretched plane of non-uniform thickness with slip effects is studied. We pondered aluminum alloys of AA7072 and AA7072 + AA7075 in methanol liquid. The aluminum alloys amalgamated in this study are uniquely manufactured materials, possessing enhanced heat transfer features. AA7072 alloy is a composite mixture of Aluminum & Zinc in the ratio 98 & 1 respectively with added metals Silicon, ferrous and Copper. Equally, AA7075 is a mixture of Aluminum, Zinc, Magnesium, and Copper in the ratio of ~90, ~6, ~3 and ~1 respectively with added metals Silicon ferrous and Magnesium. Numerical solutions are attained using R-K based shooting scheme. Role of physical factors on the flow phenomenon are analyzed and reflected by plots and numerical interpretations. Results ascertain that heat transfer rate of the hybrid nanoliquid is considerably large as matched by the nanofluid. The impact of Lorentz force is less on hybrid nanofluid when equated with nanofluid. Also, the wall thickness parameter tends to improve the Nusselt number of both the solutions.Entities:
Year: 2020 PMID: 32144369 PMCID: PMC7060228 DOI: 10.1038/s41598-020-61215-8
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematic Model.
Figure 2Impression of ϕ on .
Figure 4Impression of ϕ on .
Figure 5Impression of M on .
Figure 7Impression of M on .
Figure 8Impression of n on .
Figure 10Impression of n on .
Figure 11Impression of Λ on .
Figure 13Impression of Λ on .
Figure 14Impression of h1 on .
Figure 16Impression of h1 on .
Figure 17Impression of h2 on .
Physio-thermal properties[29].
| Thermo Physical Properties | Methanol | AA7075 | AA7072 |
|---|---|---|---|
| 792 | 2810 | 2720 | |
| 2545 | 960 | 893 | |
| 0.2035 | 173 | 222 | |
| σ (S/m) | 0.5 × 10−6 | 26.77 × 106 | 34.83 × 106 |
Values of and for diverse non-dimensional constraints.
| Λ | ||||||||
|---|---|---|---|---|---|---|---|---|
| Methanol+AA7075 | 0.1 | −0.904541 | 1.189994 | |||||
| 0.2 | −0.815286 | 1.183189 | ||||||
| 0.3 | −0.719774 | 1.171804 | ||||||
| Methanol+AA7075 + AA7072 | 0.1 | −0.924201 | 1.204535 | |||||
| 0.2 | −0.835555 | 1.200096 | ||||||
| 0.3 | −0.740353 | 1.191678 | ||||||
| Methanol+AA7075 | 1 | −0.946854 | 1.191963 | |||||
| 2 | −1.064841 | 1.140875 | ||||||
| 3 | −1.153017 | 1.096588 | ||||||
| Methanol+AA7075 + AA7072 | 1 | −0.924250 | 1.204508 | |||||
| 2 | −1.035379 | 1.158209 | ||||||
| 3 | −1.119866 | 1.117809 | ||||||
| Methanol+AA7075 | 0.1 | −0.977908 | 1.427021 | |||||
| 0.5 | −0.954347 | 1.263593 | ||||||
| 0.9 | −0.940993 | 1.125571 | ||||||
| Methanol+AA7075 + AA7072 | 0.1 | −0.947767 | 1.441625 | |||||
| 0.5 | −0.929845 | 1.276739 | ||||||
| 0.9 | −0.919909 | 1.137567 | ||||||
| Methanol+AA7075 | 0.1 | −0.946854 | 1.191963 | |||||
| 0.5 | −0.962395 | 1.285095 | ||||||
| 0.9 | −0.977748 | 1.368908 | ||||||
| Methanol+AA7075 + AA7072 | 0.1 | −0.924250 | 1.204508 | |||||
| 0.5 | −0.939929 | 1.297872 | ||||||
| 0.9 | −0.955430 | 1.381794 | ||||||
| Methanol+AA7075 | 0.2 | −1.214595 | 1.260707 | |||||
| 0.4 | −0.947198 | 1.191768 | ||||||
| 0.6 | −0.781192 | 1.137189 | ||||||
| Methanol+AA7075 + AA7072 | 0.2 | −1.180789 | 1.270845 | |||||
| 0.4 | −0.924716 | 1.204259 | ||||||
| 0.6 | −0.764753 | 1.151438 | ||||||
| Methanol+AA7075 | 0.2 | −0.951100 | 1.561062 | |||||
| 0.4 | −0.951100 | 1.189641 | ||||||
| 0.6 | −0.951100 | 0.960994 | ||||||
| Methanol+AA7075 + AA7072 | 0.2 | −0.929448 | 1.582044 | |||||
| 0.4 | −0.929448 | 1.201788 | ||||||
| 0.6 | −0.929448 | 0.968904 |
Validation of the results for (2D case-water with ϕ = 0) for various values of Λ and h1.
| Λ | ref. [ | Present Results | |
|---|---|---|---|
| 0 | 0.2 | −0.924828 | −0.924828342 |
| 0.2 | 0.25 | −0.733395 | −0.733395213 |
| 0.2 | 0.5 | −0.759570 | −0.759570103 |