期刊论文详细信息
Molecules
Thermal Transport Investigation in Magneto-Radiative GO-MoS2/H2O-C2H6O2 Hybrid Nanofluid Subject to Cattaneo–Christov Model
T. Abdeljawad1  Umar Khan2  Kottakkaran Sooppy Nisar3  Ilyas Khan4  Naveed Ahmed5  Adnan6  Syed Tauseef Mohyud-Din7 
[1] Department of Mathematics and General Sciences, Prince Sultan University, Riyadh 11 586, Saudi Arabia;Department of Mathematics and Statistics, Hazara University, Mansehra 21120, Pakistan;Department of Mathematics, College of Arts and Sciences, Prince Sattam bin Abdulaziz University, Wadi, Aldawaser 11991, Saudi Arabia;Department of Mathematics, College of Science Al-Zulfi, Majmaah University, Al-Majmaah 11952, Saudi Arabia;Department of Mathematics, Faculty of Sciences, HITEC University, Taxila Cantt 47070, Pakistan;Department of Mathematics, Mohi-ud-Din Islamic University, Nerian Sharif AJ&K 12080, Pakistan;University of Multan, Multan 60000, Pakistan;
关键词: thermal radiations;    thermal transport;    Cattaneo–Christov heat flux model;    magnetic field;    GO-MoS2/C2H6O2-H2O hybrid nanofluid;    thermophysical characteristics;   
DOI  :  10.3390/molecules25112592
来源: DOAJ
【 摘 要 】

Currently, thermal investigation in hybrid colloidal liquids is noteworthy. It has applications in medical sciences, drug delivery, computer chips, electronics, the paint industry, mechanical engineering and to perceive the cancer cell in human body and many more. Therefore, the study is carried out for 3D magnetized hybrid nanofluid by plugging the novel Cattaneo–Christov model and thermal radiations. The dimensionless version of the model is successfully handled via an analytical technique. From the reported analysis, it is examined that Graphene Oxide-molybdenum disulfide/C2H6O2-H2O has better heat transport characteristics and is therefore reliable for industrial and technological purposes. The temperature of Graphene Oxide GO-molybdenum disulfide/C2H6O2-H2O enhances in the presence of thermal relaxation parameter and radiative effects. Also, it is noted that rotational velocity of the hybrid nanofluid rises for stronger magnetic parameter effects. Moreover, prevailed behavior of thermal conductivity of GO-molybdenum disulfide/C2H6O2-H2O is detected which shows that hybrid nanofluids are a better conductor as compared to that of a regular nanofluid.

【 授权许可】

Unknown   

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