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Research Articles

Double diffusive time-dependent MHD Prandtl nanofluid flow due to linear stretching sheet with convective boundary conditions

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Pages 34-48 | Received 13 Dec 2021, Accepted 21 Jan 2022, Published online: 10 Feb 2022

References

  • Choi SU. Nanofluids: from vision to reality through research. J Heat Transf. 2009;131(3):1–9.
  • Buongiorno J. Convective transport in nanofluids. ASME J Heat Transf. 2006;128(3):240–250.
  • Sooppy Nisar K, Bilal S, Shah IA, et al. Hydromagnetic flow of Prandtl nanofluid past cylindrical surface with chemical reaction and convective heat transfer aspects. Math Prob Eng. 2021;2021:5162423(16). Article ID.
  • Patil AB, Humane PP, Patil VS, et al. MHD Prandtl nanofluid flow due to convectively heated stretching sheet below the control of chemical reaction with thermal radiation. Int J Ambient Energy. 2021;1–13. DOI:10.1080/01430750.2021.1888803.
  • Gireesha BJ, Mahanthesh B, Shivakumara IS, et al. Melting heat transfer in boundary layer stagnation-point flow of nanofluid toward a stretching sheet with induced magnetic field. Eng Sci Tech: An Int J. 2016;19(1):313–321.
  • Reddy PS, Sreedevi P. Impact of chemical reaction and double stratification on heat and mass transfer characteristics of nanofluid flow over porous stretching sheet with thermal radiation. Int J Ambient Energy. 2020;1–11. DOI:10.1080/01430750.2020.1712240
  • Abbas SZ, Khan WA, Kadry S, et al. Entropy optimized Darcy-Forchheimer nanofluid (silicon dioxide, molybdenum disulfide) subject to temperature-dependent viscosity. Comput Method Prog Biomed. 2020;190:105363.
  • Sreedevi P, Reddy PS. Combined influence of Brownian motion and thermophoresis on Maxwell three-dimensional nanofluid flow over stretching sheet with chemical reaction and thermal radiation. J Porous Media. 2020;23(4):327–340.
  • Qayyum S, Khan MI, Hayat T, et al. Comparative investigation of five nanoparticles in flow of viscous fluid with Joule heating and slip due to rotating disk. Physica B: Condensed Mat. 2018;534:173–183.
  • Hayat T, Ahmad S, Khan MI, et al. Simulation of ferromagnetic nanomaterial flow of Maxwell fluid. Results in Phys. 2018;8:34–40.
  • Hayat T, Tamoor M, Khan MI, et al. Numerical simulation for nonlinear radiative flow by convective cylinder. Results in Phys. 2016;6:1031–1035.
  • Hayat T, Khan MI, Tamoor M, et al. Numerical simulation of heat transfer in MHD stagnation point flow of Cross fluid model towards a stretched surface. Results in Phys. 2017;7:1824–1827.
  • Rajput GR, Patil VS, Jadhav BP. MHD mixed flow of unsteady convection with radiation over a vertical porous plate: lie group symmetry analysis. Appl Comput Mech. 2017;11(2):1–12. https://hdl.handle.net/11025/26592
  • Khan M, Hussain A, Malik MY, et al. Boundary layer flow of MHD tangent hyperbolic nanofluid over a stretching sheet: a numerical investigation. Results in Phys. 2017;7:2837–2844.
  • Patel HR, Mittal AS, Darji RR. MHD flow of micropolar nanofluid over a stretching/shrinking sheet considering radiation. Int Commun Heat Mass Transf. 2019;108:104322.
  • Patil VS, Patil AB, Ganesh S, et al. Unsteady MHD flow of a nano Powell-Eyring fluid near stagnation point past a convectively heated stretching sheet in the existence of chemical reaction with thermal radiation. Mater Today Proc. 2021;44:3767–3776.
  • Shamshuddin MD, Ibrahim W. Finite element numerical technique for magneto-micropolar nanofluid flow filled with chemically reactive Casson fluid between parallel plates subjected to rotatory system with Electrical and Hall currents. Int J Modell Simul. 2022;1–20. DOI:10.1080/02286203.2021.2012634
  • Fatunmbi EO, Salawu SO. Analysis of hydromagnetic micropolar nanofluid flow past a nonlinear stretchable sheet and entropy generation with navier slips. Int J Modell Simul. 2021;1–11. DOI:10.1080/02286203.2021.1905490
  • Yashkun U, Zaimi K, Bakar NA, et al. MHD hybrid nanofluid flow over a permeable stretching/shrinking sheet with thermal radiation effect. Int J Numeri Methods Heat Fluid Flow. 2020;31(3):1014–1031.
  • Humane PP, Patil VS, Patil AB. Chemical reaction and thermal radiation effects on magnetohydrodynamics flow of Casson–Williamson nanofluid over a porous stretching surface. Proc IMchE Part E: J Proc Mech Eng. 2021;235(6):2008–2018.
  • Mjankwi MA, Masanja VG, Mureithi EW, et al. Unsteady MHD flow of nanofluid with variable properties over a stretching sheet in the presence of thermal radiation and chemical reaction. Int J Math Math Sci. 2019;2019:7392459.
  • Shamshuddin MD, Mabood F, Anwar Beg O. Thermomagnetic reactive ethylene glycol-metallic nanofluid transport from a convectively heated porous surface with Ohmic dissipation, heat source, thermophoresis and Brownian motion effects. Int J Modell Simul. 2021;1–15. DOI:10.1080/02286203.2021.1977531
  • Shamshuddin MD, Salawu SO, Anwar Bég O, et al. Computation of reactive mixed convection radiative viscoelastic nanofluid thermo-solutal transport from a stretching sheet with Joule heating. Int J Model Simulat. 2021;1–25. DOI:10.1080/02286203.2021.2012635
  • Rehman SU, Mariam A, Ullah A, et al. Numerical computation of buoyancy and radiation effects on MHD micropolar nanofluid flow over a stretching/shrinking sheet with heat source. Case Stud Therm Eng. 2021;25:100867.
  • Rajput GR, Jadhav BP, Patil VS, et al. Effects of nonlinear thermal radiation over magnetized stagnation point flow of Williamson fluid in porous media driven by the stretching sheet. Heat Transf. 2021;50(3):2543–2557.
  • Waqas M, Khan MI, Hayat T, et al. Transportation of radiative energy in viscoelastic nanofluid considering buoyancy forces and convective conditions. Chaos Solitons Fractals. 2020;130:109415.
  • Hayat T, Asghar S, Tanveer A, et al. Homogeneous–heterogeneous reactions in peristaltic flow of Prandtl fluid with thermal radiation. J Mol Liq. 2017;240:504–513.
  • Eid MR, Mabood F, Mahny KL. On 3D Prandtl nanofluid flow with higher-order chemical reaction. Proc IMchE Part C: J Mech Eng Sci. 2020. DOI:10.1177/0954406220975429
  • Gopal D, Saleem S, Jagadha S, et al. Numerical analysis of higher-order chemical reaction on electrically MHD nanofluid under influence of viscous dissipation. Alex Eng J. 2021;60(1):1861–1871.
  • Shamshuddin MD, Mabood F. A numerical model for analysis of binary chemical reaction and activation energy of thermo solutal micropolar nanofluid flow through permeable stretching sheet: nanoparticle study. Phys Scr. 2021;96(7):075206.
  • Patil AB, Patil VS, and Humane PP, et al. Thermally and chemically reacted MHD Maxwell nanofluid flow past an inclined permeable stretching surface. Proc IMchE, Part E: J Proc Mech Eng. 2021:1–11. https://doi.org/10.1177/09544089211050715
  • Srinivasa Rao P, Shamshuddin MD. Second-order slip and Newtonian cooling impact on unsteady mixed convective radiative chemically reacting fluid with Hall current and cross-diffusion over a stretching sheet. Heat Transf. 2021;50(7):7380–7405.
  • Alao FI, Fagbade AI, Falodun BO. Effects of thermal radiation, soret and Dufour on an unsteady heat and mass transfer flow of a chemically reacting fluid past a semi-infinite vertical plate with viscous dissipation. J Nigerian Math Soc. 2016;35(1):142–158.
  • Idowu AS, Falodun BO. Effects of thermophoresis, Soret-Dufour on heat and mass transfer flow of magnetohydrodynamics non-Newtonian nanofluid over an inclined plate. Arab J Basic Appl Sci. 2020;27(1):149–165.
  • Reddy PS, Chamkha AJ. Soret and Dufour effects on unsteady MHD heat and mass transfer from a permeable stretching sheet with thermophoresis and non-uniform heat generation/absorption. J Appl Fluid Mech. 2016;9(5):2443–2455.
  • Bilal S, Rehman KU, Malik MY, et al. Effect logs of double diffusion on MHD Prandtl nanofluid adjacent to stretching surface by way of numerical approach. Results in Phys. 2017;7:470–479.
  • Ramudu AV, Kumar KA, Sugunamma V, et al. Impact of soret and Dufour on MHD Casson fluid flow past a stretching surface with convective–diffusive conditions. J Therm Anal Calorim. 2021. DOI:10.1007/s10973-021-10569-w.
  • Samrat SP, Reddy MG, Sandeep N. Buoyancy effect on magnetohydrodynamic radiative flow of Casson fluid with Brownian moment and thermophoresis. The Euro Phys J Special Topics. 2021;1–9. DOI:10.1140/epjs/s11734-021-00043-x
  • Ullah I, Khan I, Shafie S. Soret and Dufour effects on unsteady mixed convection slip flow of Casson fluid over a nonlinearly stretching sheet with convective boundary condition. Sci Rep. 2017;7(1):1–19.
  • Patil VS, Patil NS, Timol MG. A remark on similarity analysis of boundary layer equations of a class of non-Newtonian fluids. Int J Non-Linear Mech. 2015;71:127–131.
  • Khan I, Qasim M, Shafie S. Flow of an Erying-Powell fluid over a stretching sheet in presence of chemical reaction. Therm Sci. 2016;20(6):1903–1912.
  • Layek GC, Mandal B, Bhattacharyya K. Dufour and soret effects on unsteady heat and mass transfer for powell-eyring fluid flow over an expanding permeable sheet. J Appl Comput Mech. 2020;6(4):985–998.

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