MHD natural convection of Cu–Al2O3 water hybrid nanofluids in a cavity equally divided into two parts by a vertical flexible partition membrane
Author:
Funder
Beihang University
Publisher
Springer Science and Business Media LLC
Link
http://link.springer.com/content/pdf/10.1007/s10973-019-08258-w.pdf
Reference54 articles.
1. Ostrach S. Natural convection in enclosures. In: Hartnett JP, Irvine TF, editors. Advances in heat transfer, vol. 8. Hoboken: Elsevier; 1972. p. 161–227.
2. Sheikholeslami M, Soleimani S, Ganji DD. Effect of electric field on hydrothermal behavior of nanofluid in a complex geometry. J Mol Liq. 2016;213:153–61.
3. Al-Mudhaf AF, Chamkha AJ. Natural convection of liquid metals in an inclined enclosure in the presence of a magnetic field. Int J Fluid Mech Res. 2004;31(3):221–43.
4. Sheikholeslami M, Mehryan SAM, Shafee A, Sheremet MA. Variable magnetic forces impact on magnetizable hybrid nanofluid heat transfer through a circular cavity. J Mol Liq. 2019;277:388–96.
5. Chamkha AJ, Miroshnichenko IV, Sheremet MA. Numerical analysis of unsteady conjugate natural convection of hybrid water-based nanofluid in a semicircular cavity. J Therm Sci Eng Appl. 2017;9(4):041004-1–9.
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