Research Article
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Year 2024, Volume: 4 Issue: 4, 495 - 513, 30.12.2024
https://doi.org/10.53391/mmnsa.1438636

Abstract

References

  • [1] Khan, U., Ullah, B., Khan, W., Adnan, Khan, I. and Fayz-Al-Asad, M. Applied mathematical modelling and heat transport investigation in hybrid nanofluids under the impact of thermal radiation: numerical analysis. Mathematical Problems in Engineering, 2021(1), 180513, (2021).
  • [2] Adnan, Khan, U., Ahmed, N., Mohyud-Din, S.T., Khan, I. and Fayz-Al-Asad, M. The numerical investigation of the heat transport in the nanofluids under the impacts of magnetic field: applications in industrial zone. Mathematical Problems in Engineering, 2021(1), 3138301, ( 2021).
  • [3] Ullah, H., Khan, I., Fiza, M., Hamadneh, N.N., Fayz-Al-Asad, M., Islam, S. et al. MHD boundary layer flow over a stretching sheet: A new stochastic method. Mathematical Problems in Engineering, 2021(1), 9924593, (2021).
  • [4] Kumar, R., Sood, S., Shehzad, S.A. and Sheikholeslami, M. Radiative heat transfer study for flow of non-Newtonian nanofluid past a Riga plate with variable thickness. Journal of Molecular Liquids, 248, 143-152, (2017).
  • [5] Fayz-Al-Asad, M., Yavuz, M., Alam, M.N., Sarker, M.M.A. and Bazighifan, O. Influence of fin length on magneto-combined convection heat transfer performance in a lid-driven wavy cavity. Fractal and Fractional, 5(3), 107, (2021).
  • [6] Hossain, M.S., Fayz-Al-Asad, M., Mallik, M.S.I., Yavuz, M., Alim, M.A. and Khairul Basher, K.M. Numerical study of the effect of a heated cylinder on natural convection in a square cavity in the presence of a magnetic field. Mathematical and Computational Applications, 27(4), 58, (2022).
  • [7] Kodi, R., Vaddemani, R.R., Kommaddi, H., Noeiaghdam, S. and Fernandez-Gamiz, U. Thermodynamic and buoyancy force effects of Cu and TiO2 nanoparticles in engine oil flow over an inclined permeable surface. Journal of King Saud University-Science, 36(10), 103434, (2024).
  • [8] Zhang, L., Vaddemani, R.R., Ganjikunta, A., Bingi, S. and Kodi, R. 3D-MHD mixed convection in a darcy-forchheimer maxwell fluid: Thermo diffusion, diffusion-thermo effects, and activation energy influence. Case Studies in Thermal Engineering, 61, 104916, (2024).
  • [9] Choi, S.U.S and Eastman, J.A. Enhancing thermal conductivity of fluids with nanoparticles. In Proceedings, International Mechanical Engineering Congress & Exposition (IMECE), pp. 99-105, San Francisco, ABD, (199, November).
  • [10] Ashorynejad, H.R., Sheikholeslami, M., Pop, I. and Ganji, D.D. Nanofluid flow and heat transfer due to a stretching cylinder in the presence of magnetic field. Heat and Mass Transfer, 49, 427-436, (2013).
  • [11] Omar, N.S., Bachok, N. and Arifin, N.M. Stagnation point flow over a stretching or shrinking cylinder in a copper-water nanofluid. Indian Journal of Science and Technology, 8(31), 1-7, (2015).
  • [12] Mabood, F., Khan, W.A. and Ismail, A.M. MHD boundary layer flow and heat transfer of nanofluids over a nonlinear stretching sheet: a numerical study. Journal of Magnetism and Magnetic Materials, 374, 569-576, (2015).
  • [13] Mabood, F. and Khan, W.A. Analytical study for unsteady nanofluid MHD Flow impinging on heated stretching sheet. Journal of Molecular Liquid, 219, 216-223, (2016).
  • [14] Khan, M.I., Khan, S.A., Hayat, T., Khan, M.I. and Alsaedi, A. Nanomaterial based flow of Prandtl-Eyring (non-Newtonian) fluid using Brownian and thermophoretic diffusion with entropy generation. Computer Methods and Programs in Biomedicine, 180, 105017, (2019).
  • [15] Khan, M.I., Hayat, T., Khan, M.I., Waqas, M. and Alsaedi, A. Numerical simulation of hydromagnetic mixed convective radiative slip flow with variable fluid properties: a mathematical model for entropy generation. Journal of Physics and Chemistry of Solids, 125, 153-164, (2019).
  • [16] Ahmad, A., Asghar, S. and Afzal, S. Flow of nanofluid past a Riga plate. Journal of Magnetism and Magnetic Materials, 402, 44-48, (2016).
  • [17] Shah, N.A., Tosin, O., Shah, R., Salah, B. and Chung, J.D. Brownian motion and thermophoretic diffusion effects on the dynamics of MHD upper convected Maxwell nanofluid flow past a vertical surface. Physica Scripta, 96(12), 125722, (2021).
  • [18] Shah, N.A., Popoola, A.O., Oreyeni, T., Omokhuale, E. and Altine, M.M. A modelling of bioconvective flow existing with tiny particles and quartic autocatalysis reaction across stratified upper horizontal surface of a paraboloid of revolution. Mathematical Modelling and Numerical Simulation with Applications, 3(1), 74-100, (2023).
  • [19] Oreyeni, T., Oladimeji Akindele, A., Martins Obalalu, A., Olakunle Salawu, S. and Ramesh, K. Thermal performance of radiative magnetohydrodynamic Oldroyd-B hybrid nanofluid with Cattaneo–Christov heat flux model: Solar-powered ship application. Numerical Heat Transfer, Part A: Applications, 85(12), 1954-1972, (2023).
  • [20] Fayz-Al-Asad, M., Oreyeni, T., Yavuz, M. and Olanrewaju, P.O. Analytic simulation of MHD boundary layer flow of a chemically reacting upper-convected Maxwell fluid past a vertical surface subjected to double stratifications with variable properties. The European Physical Journal Plus, 137, 813, (2022).
  • [21] Yadav, D., Awasthi, M.K., Ragoju, R., Bhattacharyya, K., Kodi, R. and Wang, J. The impact of rotation on the onset of cellular convective movement in a casson fluid saturated permeable layer with temperature dependent thermal conductivity and viscosity deviations. Chinese Journal of Physics, 91, 262-277, (2024).
  • [22] Yedhiri, S.R., Palaparthi, K.K., Kodi, R. and Asmat, F. Unsteady MHD rotating mixed convective flow through an infinite vertical plate subject to Joule heating, thermal radiation, Hall current, radiation absorption. Journal of Thermal Analysis and Calorimetry, 149, 8813–8826, (2024).
  • [23] Kommaddi, H.B., Kodi, R., Ganteda, C. and Lorenzini, G. Heat and mass transfer on unsteady MHD chemically reacting rotating flow of Jeffrey fluid past an inclined plates under the impact of hall current, diffusion thermo and radiation absorption. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 111(2), 225-241, (2023).
  • [24] Kodi, R., Ravuri, M.R., Veeranna, V., Khan, M.I., Abdullaev, S. and Tamam, N. Hall current and thermal radiation effects of 3D rotating hybrid nanofluid reactive flow via stretched plate with internal heat absorption. Results in Physics, 53, 106915, (2023).
  • [25] Raju, K.V., Mohanaramana, R., Reddy, S.S. and Raghunath, K. Chemical radiation and soret effects on unsteady MHD convective flow of Jeffrey nanofluid past an inclined semi-infinite vertical permeable moving plate. Communications in Mathematics and Applications, 14(1), 237- 255, (2023).
  • [26] Dandu, S., Chitrapu, V.R.M. and Kodi, R. An investigation into the impact of thermal radiation and chemical reactions on the flow through porous media of a Casson hybrid nanofluid including unstable mixed convection with a stretched sheet in the presence of thermophoresis and Brownian motion. Open Physics, 22(1), 20240043, (2024).
  • [27] Patil, P.M., Anilkumar, D. and Roy, S. Unsteady thermal radiation mixed convection flow from a moving vertical plate in a parallel free stream: effect of Newtonian heating. International Journal of Heat and Mass Transfer, 62, 534-540, (2013).
  • [28] Akbar, N.S. and Khan, Z.H. Influence of magnetic field for metachoronical beating of cilia for nanofluid with Newtonian heating. Journal of Magnetism and Magnetic Materials, 381, 235-242, (2015).
  • [29] Das, M., Mahato, R. and Nandkeolyar, R. Newtonian heating effect on unsteady hydromagnetic Casson fluid flow past a flat plate with heat and mass transfer. Alexandria Engineering Journal, 54(4), 871-879, (2015).
  • [30] Pal, D., Roy, N. and Vajravelu, K. Effects of thermal radiation and Ohmic dissipation on MHD Casson nanofluid flow over a vertical non-linear stretching surface using scaling group transformation. International Journal of Mechanical Sciences, 114, 257-267, (2016).
  • [31] Elsaid, E.M. and AlShurafat, K.S. Impact of hall current and joule heating on a rotating hybrid nanofluid over a stretched plate with nonlinear thermal radiation. Journal of Nanofluids, 12(2), 548-556, (2023).
  • [32] Elsaid, E.M. and Abdel-wahed, M.S. MHD mixed convection Ferro Fe3O4/Cu-hybridnanofluid runs in a vertical channel. Chinese Journal of Physics, 76, 269-282, (2022).
  • [33] Abdel-Wahed, M.S. Rotating ferro-nanofluid over stretching plate under the effect of hall current and joule heating. Journal of Magnetism and Magnetic Materials, 429, 287-293, (2017).

Magneto-hydrodynamic mixed convection chemically rotating and radiating 3D hybrid nanofluid flow through porous media over a stretched surface

Year 2024, Volume: 4 Issue: 4, 495 - 513, 30.12.2024
https://doi.org/10.53391/mmnsa.1438636

Abstract

This study presents a comprehensive 3D analysis of hybrid $ {Fe}_{3}{O}_{4}/{Al}_{2}{O}_{3}$ nanofluid flow over a stretched plate, incorporating the effects of buoyancy, Hall current, rotation, nonlinear thermal radiation, and Joule heating. A key novelty of the work lies in extending previous models by introducing mixed convection flow and a concentration equation, alongside thermophoresis and Brownian motion, offering a deeper understanding of hybrid nanofluid behavior in complex thermal environments. The governing partial differential equations are transformed into nonlinear ordinary differential equations using similarity transformations and solved numerically via the shooting method. These findings have critical implications for optimizing heat exchangers, cooling systems, and chemical reactors, where efficient thermal management is essential. The study’s integration of multiple physical phenomena highlights its novelty and contributes valuable insights to the field of computational fluid dynamics and industrial applications. It is observed that increased buoyancy enhances the primary fluid velocity, but reduces the secondary velocity. This results in lower temperature and concentration profiles, indicating that buoyancy significantly affects the fluid's flow and thermal behavior.

References

  • [1] Khan, U., Ullah, B., Khan, W., Adnan, Khan, I. and Fayz-Al-Asad, M. Applied mathematical modelling and heat transport investigation in hybrid nanofluids under the impact of thermal radiation: numerical analysis. Mathematical Problems in Engineering, 2021(1), 180513, (2021).
  • [2] Adnan, Khan, U., Ahmed, N., Mohyud-Din, S.T., Khan, I. and Fayz-Al-Asad, M. The numerical investigation of the heat transport in the nanofluids under the impacts of magnetic field: applications in industrial zone. Mathematical Problems in Engineering, 2021(1), 3138301, ( 2021).
  • [3] Ullah, H., Khan, I., Fiza, M., Hamadneh, N.N., Fayz-Al-Asad, M., Islam, S. et al. MHD boundary layer flow over a stretching sheet: A new stochastic method. Mathematical Problems in Engineering, 2021(1), 9924593, (2021).
  • [4] Kumar, R., Sood, S., Shehzad, S.A. and Sheikholeslami, M. Radiative heat transfer study for flow of non-Newtonian nanofluid past a Riga plate with variable thickness. Journal of Molecular Liquids, 248, 143-152, (2017).
  • [5] Fayz-Al-Asad, M., Yavuz, M., Alam, M.N., Sarker, M.M.A. and Bazighifan, O. Influence of fin length on magneto-combined convection heat transfer performance in a lid-driven wavy cavity. Fractal and Fractional, 5(3), 107, (2021).
  • [6] Hossain, M.S., Fayz-Al-Asad, M., Mallik, M.S.I., Yavuz, M., Alim, M.A. and Khairul Basher, K.M. Numerical study of the effect of a heated cylinder on natural convection in a square cavity in the presence of a magnetic field. Mathematical and Computational Applications, 27(4), 58, (2022).
  • [7] Kodi, R., Vaddemani, R.R., Kommaddi, H., Noeiaghdam, S. and Fernandez-Gamiz, U. Thermodynamic and buoyancy force effects of Cu and TiO2 nanoparticles in engine oil flow over an inclined permeable surface. Journal of King Saud University-Science, 36(10), 103434, (2024).
  • [8] Zhang, L., Vaddemani, R.R., Ganjikunta, A., Bingi, S. and Kodi, R. 3D-MHD mixed convection in a darcy-forchheimer maxwell fluid: Thermo diffusion, diffusion-thermo effects, and activation energy influence. Case Studies in Thermal Engineering, 61, 104916, (2024).
  • [9] Choi, S.U.S and Eastman, J.A. Enhancing thermal conductivity of fluids with nanoparticles. In Proceedings, International Mechanical Engineering Congress & Exposition (IMECE), pp. 99-105, San Francisco, ABD, (199, November).
  • [10] Ashorynejad, H.R., Sheikholeslami, M., Pop, I. and Ganji, D.D. Nanofluid flow and heat transfer due to a stretching cylinder in the presence of magnetic field. Heat and Mass Transfer, 49, 427-436, (2013).
  • [11] Omar, N.S., Bachok, N. and Arifin, N.M. Stagnation point flow over a stretching or shrinking cylinder in a copper-water nanofluid. Indian Journal of Science and Technology, 8(31), 1-7, (2015).
  • [12] Mabood, F., Khan, W.A. and Ismail, A.M. MHD boundary layer flow and heat transfer of nanofluids over a nonlinear stretching sheet: a numerical study. Journal of Magnetism and Magnetic Materials, 374, 569-576, (2015).
  • [13] Mabood, F. and Khan, W.A. Analytical study for unsteady nanofluid MHD Flow impinging on heated stretching sheet. Journal of Molecular Liquid, 219, 216-223, (2016).
  • [14] Khan, M.I., Khan, S.A., Hayat, T., Khan, M.I. and Alsaedi, A. Nanomaterial based flow of Prandtl-Eyring (non-Newtonian) fluid using Brownian and thermophoretic diffusion with entropy generation. Computer Methods and Programs in Biomedicine, 180, 105017, (2019).
  • [15] Khan, M.I., Hayat, T., Khan, M.I., Waqas, M. and Alsaedi, A. Numerical simulation of hydromagnetic mixed convective radiative slip flow with variable fluid properties: a mathematical model for entropy generation. Journal of Physics and Chemistry of Solids, 125, 153-164, (2019).
  • [16] Ahmad, A., Asghar, S. and Afzal, S. Flow of nanofluid past a Riga plate. Journal of Magnetism and Magnetic Materials, 402, 44-48, (2016).
  • [17] Shah, N.A., Tosin, O., Shah, R., Salah, B. and Chung, J.D. Brownian motion and thermophoretic diffusion effects on the dynamics of MHD upper convected Maxwell nanofluid flow past a vertical surface. Physica Scripta, 96(12), 125722, (2021).
  • [18] Shah, N.A., Popoola, A.O., Oreyeni, T., Omokhuale, E. and Altine, M.M. A modelling of bioconvective flow existing with tiny particles and quartic autocatalysis reaction across stratified upper horizontal surface of a paraboloid of revolution. Mathematical Modelling and Numerical Simulation with Applications, 3(1), 74-100, (2023).
  • [19] Oreyeni, T., Oladimeji Akindele, A., Martins Obalalu, A., Olakunle Salawu, S. and Ramesh, K. Thermal performance of radiative magnetohydrodynamic Oldroyd-B hybrid nanofluid with Cattaneo–Christov heat flux model: Solar-powered ship application. Numerical Heat Transfer, Part A: Applications, 85(12), 1954-1972, (2023).
  • [20] Fayz-Al-Asad, M., Oreyeni, T., Yavuz, M. and Olanrewaju, P.O. Analytic simulation of MHD boundary layer flow of a chemically reacting upper-convected Maxwell fluid past a vertical surface subjected to double stratifications with variable properties. The European Physical Journal Plus, 137, 813, (2022).
  • [21] Yadav, D., Awasthi, M.K., Ragoju, R., Bhattacharyya, K., Kodi, R. and Wang, J. The impact of rotation on the onset of cellular convective movement in a casson fluid saturated permeable layer with temperature dependent thermal conductivity and viscosity deviations. Chinese Journal of Physics, 91, 262-277, (2024).
  • [22] Yedhiri, S.R., Palaparthi, K.K., Kodi, R. and Asmat, F. Unsteady MHD rotating mixed convective flow through an infinite vertical plate subject to Joule heating, thermal radiation, Hall current, radiation absorption. Journal of Thermal Analysis and Calorimetry, 149, 8813–8826, (2024).
  • [23] Kommaddi, H.B., Kodi, R., Ganteda, C. and Lorenzini, G. Heat and mass transfer on unsteady MHD chemically reacting rotating flow of Jeffrey fluid past an inclined plates under the impact of hall current, diffusion thermo and radiation absorption. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 111(2), 225-241, (2023).
  • [24] Kodi, R., Ravuri, M.R., Veeranna, V., Khan, M.I., Abdullaev, S. and Tamam, N. Hall current and thermal radiation effects of 3D rotating hybrid nanofluid reactive flow via stretched plate with internal heat absorption. Results in Physics, 53, 106915, (2023).
  • [25] Raju, K.V., Mohanaramana, R., Reddy, S.S. and Raghunath, K. Chemical radiation and soret effects on unsteady MHD convective flow of Jeffrey nanofluid past an inclined semi-infinite vertical permeable moving plate. Communications in Mathematics and Applications, 14(1), 237- 255, (2023).
  • [26] Dandu, S., Chitrapu, V.R.M. and Kodi, R. An investigation into the impact of thermal radiation and chemical reactions on the flow through porous media of a Casson hybrid nanofluid including unstable mixed convection with a stretched sheet in the presence of thermophoresis and Brownian motion. Open Physics, 22(1), 20240043, (2024).
  • [27] Patil, P.M., Anilkumar, D. and Roy, S. Unsteady thermal radiation mixed convection flow from a moving vertical plate in a parallel free stream: effect of Newtonian heating. International Journal of Heat and Mass Transfer, 62, 534-540, (2013).
  • [28] Akbar, N.S. and Khan, Z.H. Influence of magnetic field for metachoronical beating of cilia for nanofluid with Newtonian heating. Journal of Magnetism and Magnetic Materials, 381, 235-242, (2015).
  • [29] Das, M., Mahato, R. and Nandkeolyar, R. Newtonian heating effect on unsteady hydromagnetic Casson fluid flow past a flat plate with heat and mass transfer. Alexandria Engineering Journal, 54(4), 871-879, (2015).
  • [30] Pal, D., Roy, N. and Vajravelu, K. Effects of thermal radiation and Ohmic dissipation on MHD Casson nanofluid flow over a vertical non-linear stretching surface using scaling group transformation. International Journal of Mechanical Sciences, 114, 257-267, (2016).
  • [31] Elsaid, E.M. and AlShurafat, K.S. Impact of hall current and joule heating on a rotating hybrid nanofluid over a stretched plate with nonlinear thermal radiation. Journal of Nanofluids, 12(2), 548-556, (2023).
  • [32] Elsaid, E.M. and Abdel-wahed, M.S. MHD mixed convection Ferro Fe3O4/Cu-hybridnanofluid runs in a vertical channel. Chinese Journal of Physics, 76, 269-282, (2022).
  • [33] Abdel-Wahed, M.S. Rotating ferro-nanofluid over stretching plate under the effect of hall current and joule heating. Journal of Magnetism and Magnetic Materials, 429, 287-293, (2017).
There are 33 citations in total.

Details

Primary Language English
Subjects Experimental Mathematics, Biological Mathematics, Dynamical Systems in Applications
Journal Section Research Articles
Authors

Katikala N. V. Ch. Bhargava This is me 0009-0005-6401-1061

Shaik Mohammed Ibrahim This is me 0000-0002-7918-5364

Raghunath Kodi 0000-0002-1622-3634

Publication Date December 30, 2024
Submission Date February 17, 2024
Acceptance Date December 10, 2024
Published in Issue Year 2024 Volume: 4 Issue: 4

Cite

APA Bhargava, K. N. V. C., Ibrahim, S. M., & Kodi, R. (2024). Magneto-hydrodynamic mixed convection chemically rotating and radiating 3D hybrid nanofluid flow through porous media over a stretched surface. Mathematical Modelling and Numerical Simulation With Applications, 4(4), 495-513. https://doi.org/10.53391/mmnsa.1438636


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