Thermophoretic particle deposition on double-diffusive Ree-Eyring fluid flow across two deformable rotating disks with Hall current and Ion slip
Author:
Funder
Deanship of Scientific Research, King Khalid University
Khon Kaen University
Publisher
Elsevier BV
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference62 articles.
1. Convective MHD fluid flow over stretchable rotating disks with dufour and Soret effects;Sharma;Int. J. Appl. Comput. Math.,2022
2. Darcy-Forchheimer fluid flow over stretchable rotating disk moving upward/downward with heat source/sink;Kumar;Special Top. Rev. Porous Media Int. J.,2022
3. Comprehensive investigations of (Au-Ag/Blood and Cu-Fe3O4/Blood) hybrid nanofluid over two rotating disks: Numerical and computational approach;Basit;Alex. Eng. J.,2023
4. Unsteady hybrid nanofluid (UO 2, MWCNTs/blood) flow between two rotating stretchable disks with chemical reaction and activation energy under the influence of convective boundaries;Qayyum;Sci. Rep.,2023
5. Cattaneo-Christov heat flux modeling in nanofliuid TiO2–titanium oxide and aggregation nanoparticle flow between two rotating disks;Zeb;Waves Random Complex Media,2023
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