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Research Article

Investigation of Arrhenius activation energy and convective heat transfer efficiency in radiative hybrid nanofluid flow

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Received 09 Sep 2021, Accepted 21 Dec 2021, Published online: 31 Jan 2022

References

  • Gowda RJP, Kumar RN, Rauf A, et al. Magnetized flow of sutterby nanofluid through cattaneo-christov theory of heat diffusion and stefan blowing condition. Appl. Nanosci. May 2021.
  • Wang F, Asjad MI, Zahid M, et al. Unsteady thermal transport flow of Casson nanofluids with generalized Mittag–Leffler kernel of Prabhakar’s type. J. Mater. Res. Technol. Sep. 2021;14:1292–1300.
  • Alhadhrami A, Alzahrani HAH, Naveen Kumar R, et al. Impact of thermophoretic particle deposition on Glauert wall jet slip flow of nanofluid. Case Stud. Therm. Eng. Dec. 2021;28:101404.
  • Ramesh GK, Madhukesh JK, Prasannakumara BC, et al. Thermodynamics examination of Fe3O4-CoFe2O4/water + EG nanofluid in a heated plate: crosswise and stream-wise aspects. Arab. J. Sci. Eng. Oct. 2021.
  • Punith Gowda RJ, Naveen Kumar R, Prasannakumara BC, et al. Exploring magnetic dipole contribution on ferromagnetic nanofluid flow over a stretching sheet: An application of Stefan blowing. J. Mol. Liq. Aug. 2021;335:116215.
  • Ramesh GK, Madhukesh JK. Activation energy process in hybrid CNTs and induced magnetic slip flow with heat source/sink. Chin. J. Phys. Oct. 2021;73:375–390.
  • Gowda RJP, Naveenkumar R, Madhukesh JK, et al. Theoretical analysis of SWCNT- MWCNT/H2O hybrid flow over an upward /downward moving rotating disk. Proc. Inst. Mech. Eng. Part N J. Nanomater. Nanoeng. Nanosyst. Sep. 2021;235(3–4):97–106.
  • Yusuf TA, Mabood F, Prasannakumara BC, et al. Magneto-Bioconvection flow of Williamson nanofluid over an inclined plate with gyrotactic microorganisms and entropy generation. Fluids. Mar. 2021;6(3):3.
  • Madhukesh J, Alhadhrami A, Naveen Kumar R, et al. Physical insights into the heat and mass transfer in Casson hybrid nanofluid flow induced by a Riga plate with thermophoretic particle deposition. Proc. Inst. Mech. Eng. Part E J. Process Mech. Eng. Aug. 2021: 09544089211039305.
  • Ramesh GK, Madhukesh JK, Prasannakumara BC, et al. Significance of aluminium alloys particle flow through a parallel plates with activation energy and chemical reaction. J. Therm. Anal. Calorim. Jul. 2021.
  • Zhao T-H, Khan MI, Qayyum S, et al. Comparative study of ferromagnetic hybrid (manganese zinc ferrite, nickle zinc ferrite) nanofluids with velocity slip and convective conditions. Phys. Scr. Apr. 2021;96(7):075203.
  • Benos LT, Nagaraju KR, Mahabaleshwar US, et al. Magnetohydrodynamic and radiation effects on the heat transfer of a continuously stretching/shrinking sheet with mass transpiration of the horizontal boundary. Chin. J. Phys. Aug. 2021;72:700–715.
  • Li Y-X, Hamid A, Ijaz Khan M, et al. Dual branch solutions (multi-solutions) for nonlinear radiative Falkner–Skan flow of Maxwell nanomaterials with heat and mass transfer over a static/moving wedge. Int J Mod Phys C. Apr. 2021;32:1–20.
  • Manohar GR, Venkatesh P, Gireesha BJ, et al. Dynamics of hybrid nanofluid through a semi spherical porous fin with internal heat generation. Partial Differ. Equ. Appl. Math. Dec. 2021;4:100150.
  • Punith Gowda RJ, Naveen Kumar R, Jyothi AM, et al. Impact of binary chemical reaction and activation energy on heat and mass transfer of Marangoni driven boundary layer flow of a Non-Newtonian nanofluid. Processes. Apr. 2021;9(4):4.
  • Kotresh MJ, Ramesh GK, Shashikala VKR, et al. Assessment of Arrhenius activation energy in stretched flow of nanofluid over a rotating disc. Heat Transf. 2021;50(3):2807–2828.
  • Reddy MG, R NK, Prasannakumara C, et al. Magnetohydrodynamic flow and heat transfer of a hybrid nanofluid over a rotating disk by considering Arrhenius energy. Commun. Theor. Phys. Feb. 2021;73(4):045002.
  • Naveen Kumar R, Punith Gowda RJ, Gireesha BJ, et al. Non- Newtonian hybrid nanofluid flow over vertically upward/downward moving rotating disk in a Darcy–Forchheimer porous medium. Eur. Phys. J. Spec. Top. Apr. 2021;230:1227–1237.
  • Madhukesh JK, Ramesh GK, Prasannakumara BC, et al. Bio-Marangoni convection flow of Casson nanoliquid through a porous medium in the presence of chemically reactive activation energy. Appl. Math. Mech. Aug. 2021;42(8):1191–1204.
  • Madhukesh JK, Ramesh GK, Varun Kumar RS, et al. Computational study of chemical reaction and activation energy on the flow of Fe3O4-Go/water over a moving thin needle: theoretical aspects. Comput. Theor. Chem. Aug. 2021;1202:113306.
  • Hayat T, Saif RS, Ellahi R, et al. Numerical study of boundary-layer flow due to a nonlinear curved stretching sheet with convective heat and mass conditions. Results Phys. Jan. 2017;7:2601–2606.
  • Khan MI, Muhammad K, Hayat T, et al. Numerical simulation for Darcy-Forchheimer flow of carbon nanotubes due to convectively heated nonlinear curved stretching surface. Int J Numer Methods Heat Fluid Flow. Jan. 2019;29(9):3290–3304.
  • Varun Kumar RS, Gunderi Dhananjaya P, Naveen Kumar R, et al. Modeling and theoretical investigation on Casson nanofluid flow over a curved stretching surface with the influence of magnetic field and chemical reaction. Int. J. Comput. Methods Eng. Sci. Mech. Mar. 2021;0(0):1–8.
  • Madhukesh JK, Naveen Kumar R, Punith Gowda RJ, et al. Numerical simulation of AA7072- AA7075/water-based hybrid nanofluid flow over a curved stretching sheet with Newtonian heating: A non-Fourier heat flux model approach. J Mol Liq. 2021;335:116103.
  • Kumar RN, Punith Gowda RJ, Alam MM, et al. Inspection of convective heat transfer and KKL correlation for simulation of nanofluid flow over a curved stretching sheet. Int. Commun. Heat Mass Transf. Jul. 2021;126:105445.
  • Punith Gowda RJ, Jyothi AM, Naveen Kumar R, et al. Convective flow of second Grade Fluid Over a curved stretching sheet with dufour and soret effects. Int. J. Appl. Comput. Math. Nov. 2021;7(6):226.
  • Punith Gowda RJ, Baskonus HM, Naveen Kumar R, et al. Computational investigation of Stefan blowing effect on flow of second-Grade fluid over a curved stretching sheet. Int. J. Appl. Comput. Math. May 2021;7(3):109.
  • Lin Y, Yang M. Marangoni flow and mass transfer of power-law non-Newtonian fluids over a disk with suction and injection. Commun. Theor. Phys. Aug. 2020;72(9):095003.
  • Bognár G, Hriczó K. Ferrofluid flow in magnetic field above stretching sheet with suction and injection. Math. Model. Anal. Jul. 2020;25(3):3.
  • Ferdows M, Shamshuddin M, Zaimi K. Computation of steady free convective boundary layer Viscous Fluid flow and heat transfer towards the moving flat subjected to suction/injection effects. CFD Lett. Mar. 2021;13(3):16–24.
  • Sajid M, Ali N, Javed T, et al. Stretching a curved surface in a viscous fluid. Chin. Phys. Lett. Feb. 2010;27(2):024703.
  • Hayat T, Qayyum S, Alsaedi A, et al. Entropy generation minimization: Darcy-Forchheimer nanofluid flow due to curved stretching sheet with partial slip. Int. Commun. Heat Mass Transf. Feb. 2020;111:104445.
  • Acharya N, Maity S, Kundu PK. Framing the hydrothermal features of magnetized TiO2–CoFe2O4 water-based steady hybrid nanofluid flow over a radiative revolving disk. Multidiscipline Modeling Mater. Struct. 2019;16(4):765–790.
  • Abbas Z, Naveed M, Sajid M. Heat transfer analysis for stretching flow over a curved surface with magnetic field. J Eng Thermo Phys. 2013;22(4):337–345.

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