Hybridization of artificial neural network and response surface methodology for the optimized heat transfer rate on three-dimensional micropolar nanofluid using Hamilton–Crosser conductivity model through a circular cylinder

Author:

Panda SubhajitORCID,Ontela SurenderORCID,Mishra S. R.ORCID,Thumma ThirupathiORCID

Publisher

Springer Science and Business Media LLC

Subject

Physical and Theoretical Chemistry,Condensed Matter Physics,Polymers and Plastics,Materials Chemistry

Reference29 articles.

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2. Abbas N, Saleem S, Nadeem S, Alderremy AA, Khan AU. Results in physics on stagnation point flow of a micro polar nano fluid past a circular cylinder with velocity and thermal slip. Results Phys. 2018;9:1224–32. https://doi.org/10.1016/j.rinp.2018.04.017.

3. Thumma T, Mishra SR, Bég OA. ADM solution for Cu/CuO-water viscoplastic nanofluid transient slip flow from a porous stretching sheet with entropy generation, convective wall temperature and radiative effects. J Appl Comput Mech. 2021;7:1291–305.

4. Thumma T, Mishra SR. Effect of nonuniform heat source/sink, and viscous and Joule dissipation on 3D Eyring-Powell nanofluid flow over a stretching sheet. J Comput Des Eng. 2020;7:412–26.

5. Waini I, Ishak A, Pop I. Melting heat transfer of a hybrid nanofluid flow towards a stagnation point region with second-order slip. Proc Inst Mech Eng Part E J Process Mech Eng. 2021;235:405–15.

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