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Research Article

Analysis of entropy generation and activation energy on double diffusive magnetohydrodynamic Williamson nanofluid flow featuring nonlinear thermal radiation

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Pages 351-362 | Received 05 Apr 2022, Accepted 14 Jul 2022, Published online: 17 Oct 2022

References

  • Bellman, R. E., and R. E. Kalaba. 1965. Quasilinearization and Nonlinear Boundary-Value Problems. New York, NY: Elsevier.
  • Choi, S. U. S., and J. A. Eastman. 1995. “Enhancing Thermal Conductivity of Fluids with Nanoparticles”; Presented at International Mechanical Engineering Congress and Exhibition; San Francisco, CA USA. 12–17 November 1995; https://www.osti.gov/servlets/purl/196525.
  • Daniel, Y. S., Z. A. Aziz, Z. Ismail, and S. Faisal. 2018. “Thermal Stratification Effects on MHD Radiative Flow of Nanofluid Over Nonlinear Stretching Sheet with Variable Thickness.” Journal of Computational Design and Engineering 5: 232–242.
  • Dhlamini, M., P. K. Kameswaran, P. Sibanda, S. Motsa, and H. Mondal. 2019. “Activation Energy and Binary Chemical Reaction Effects in Mixed Convective Nanofluid Flow with Convective Boundary Conditions.” Journal of Computational Design and Engineering 6: 149–158.
  • Dhlamini, M., H. Mondal, P. Sibanda, and S. Motsa. 2020. “Activation Energy and Entropy Generation in Viscous Nanofluid with Higher Order Chemically Reacting Species.” International Journal of Ambient Energy. doi:10.1080/01430750.2019.1710564.
  • Hayat, T., M. I. Khan, S. Qayyuma, A. Alsaedi, and M. I. Khan. 2018a. “New Thermodynamics of Entropy Generation Minimization with Nonlinear Thermal Radiation and Nanomaterials.” Physics Letters A 382: 749–760.
  • Hayat, T., M. Z. Kiyani, A. Alsaedi, M. I. Khan, and I. Ahmad. 2018b. “Mixed Convective Three Dimensional Flow of Williamson Nanofluid Subject to Chemical Reaction.” International Journal of Heat and Mass Transfer 127: 422–429.
  • Hosseinzadeh, Kh, F. Afsharpanah, S. Zamani, M. Gholinia, and D. D. Ganji. 2018. “A Numerical Investigation on Ethylene Glycol-Titanium Dioxide Nanofluid Convective Flow Over a Stretching Sheet in Presence of Heat Generation/Absorption, Case Stud.” Thermal Engineering 12: 228–236.
  • Khan, M. I., T. A. Khan, S. Qayyum, T. Hayat, M. I. Khan, and A. Alsaedi. 2018. “Entropy Generation Optimization and Activation Energy in Nonlinear Mixed Convection Flow of a Tangent Hyperbolic Nanofluid.” European Physical Journal Plus 133: 329. doi:10.1140/epjp/i2018-12093-y.
  • Khan, M. I., S. Qayyum, T. Hayat, M. I. Khan, and A. Alsaedi. 2019. “Entropy Optimization in Flow of Williamson Nanofluid in the Presence of Chemical Reaction and Joule Heating.” International Journal of Heat and Mass Transfer 133: 959–967. doi:10.1016/j.ijheatmasstransfer.2018.12.168.
  • Kho, Y. B., Hussannan, A., Mohamed, M. K. A., and Salleh, M. Z. 2019. “Heat and Mass Transfer Analysis on Flow of Williamson Nanofluid with Thermal and Velocity Slips: Buongiorno Model.” Propulsion and Power Research 8(3): 243-252.
  • Lazaridis, F., A. Savara, and P. Argyrakis. 2014. “Reaction Efficiency Effects on Binary Chemical Reactions.” The Journal of Chemical Physics 141 (10): 104103.
  • Li, Z., M. Sheikholeslami, M. Jafaryar, M. Shafee, A. and Chamkha, and A. J. 2018. “Investigation of Nanofluid Entropy Generation in a Heat Exchanger with Helical Twisted Tapes.” Journal of Molecular Liquids 266: 797–805.
  • Madhu, M., N. Kishan, and A. J. Chamkha. 2017. “Unsteady Flow of a Maxwell Nanofluid Over a Stretching Surface in the Presence of Magnetohydrodynamic and Thermal Radiation Effects.” Propulsion and Power Research 6: 31–40.
  • Maleque, K. A. 2013. “Effects of Exothermic/Endothermic Chemical Reactions with Arrhenius Activation Energy on MHD Free Convection and Mass Transfer Flow in Presence of Thermal Radiation.” Hindawi Publishing Corporation Journal of Thermodynamics 692516: 11 pp. doi:10.1155/2013/692516.
  • Nadeem, S., S. T. Hussain, and C. Lee. 2013. “Flow of Williamson Fluid Over a Stretching Sheet.” Brazilian Journal of Chemical Engineering 30: 619–625.
  • Nandkeolyar, Raj, B. K. Mahatha, and G. K. Mahato. 2018. “Effect of Chemical Reaction and Heat Absorption on MHD Nanoliquid Flow Past a Stretching Sheet in the Presence of a Transverse Magnetic Field.” Magnetochemistry 4: 18.
  • Nayak, M. N., S. Sachin, H. Waqas, and M. Taseer. 2022. “Numerical Computation for Entropy Generation in Darcy-Forchheimer Transport of Hybrid Nanofluids with Cattaneo-Christov Double-Diffusion.” International Journal of Numerical Methods for Heat and Fluid Flow 32 (6): 1861–1882.
  • Nouri, D., M. Pasandideh-Fard, M. J. Oboodi, O. Mahian, and A. Z. Sahin. 2018. “Entropy Generation Analysis of Nanofluid Flow Over a Spherical Heat Source Inside a Channel with Sudden Expansion and Contraction.” International Journal of Heat and Mass Transfer 116: 1036–1043.
  • Oyelakin, I. S., H. Sithole Mthethwa, P. K. Kameswaran, S. Shaw, and P. Sibanda. 2022. “Entropy Generation Optimisation for Unsteady Stagnation Casson Nanofluid Flow Over a Stretching Sheet with Binary Chemical Reaction and Arrhenius Activation Energy Using the Bivariate Spectral Quasi-Linearisation Method.” International Journal of Ambient Energy, doi:10.1080/01430750.2021.2023038.
  • Pal, D., and S. Mondal. 2021. “Analysis of Entropy Generation on Hydromagnetic Viscoelastic Nanofluid in Stagnation-Point Flow Over a Stretching Sheet.” International Journal for Computational Methods in Engineering Science and Mechanics. doi:10.1080/15502287.2021.1941426.
  • Pal, D., S. Mondal, and H. Mondal. 2019. “Entropy Generation on MHD Jeffrey Nanofluid Over a Stretching Sheet with Nonlinear Thermal Radiation Using Spectral Quasilinearisation Method.” Internal Journal of Ambient Energy 42 (15): 1712–1726. doi:10.1080/01430750.2019.1614984.
  • Qayyum, S., T. Hayat, M. I. Khan, M. I. Khan, and A. Alsaedi. 2018. “Optimization of Entropy Generation and Dissipative Nonlinear Radiative Von Karman’s Swirling Flow with Soret and Dufour Effects.” Journal of Molecular Liquids 262: 261–274.
  • Reddy, K. V., G. V. R. Reddy, and Y. H. Krishna. 2021. “Effects of Cattaneo-Christov Heat Flux Analysis on Heat and Mass Transport of Casson Nanoliquid Past an Accelerating Penetrable Plate with Thermal Radiation and Soret-Dufour Mechanism.” Heat Transfer 50 (4): 3458–3479.
  • Sharma, R. P., and S. Shaw. 2022. “MHD Non-Newtonian Fluid Flow Past a Stretching Sheet Under the Influence of non-Linear Radiation and Vicous Dissipation.” Journal of Applied and Computational Mechanics 8: 949–961.
  • Shaw, S., F. Mabood, T. Muhammad, M. N. Nayak, and M. Alghamdi. 2022. “Numerical Simulation for Entropy Optimized Nonlinear Radiative Flow of GO-Al2O3 Magneto Nanomaterials with Auto Catalysis Chemical Reaction.” Numer Methods for Partial Differential Equations 38: 329–358.
  • Siegel, R., and J. R. Howell. 2001. Thermal Radiation Heat Transfer, 4th Edition. New York: Taylor & Francis.
  • Suneetha, K., S. M. Ibrahim, G. V. R. Reddy, and P. V. Kumar. 2020. “Variable Temperature and Concentration Impacts on Radiative Chemically Magnetohydrodynamic Viscoelastic Fluid Flow Through Porous Moving Plate.” Mathematical Modelling of Engineering Problems 7 (2): 187–195. doi:10.18280/mmep.070203.
  • Tharapatla, G., P. RajKumari, and G. V. R. Reddy. 2021. “Effects of Heat and Mass Transfer on MHD Nonlinear Free Convection non-Newtonian Fluids Flow Embedded in a Thermally Stratified Porous Medium.” Heat Transfer 50 (4): 3480–3500. doi:10.1002/htj.22037.
  • Trefethen, L. N. 2000. Spectral Methods in MATLAB. Philadelphia, PA: SIAM.
  • Umar, M., R. Akhtar, Z. Sabir, et al. 2019. “Numerical Treatment for the Three-Dimensional Eyring-Powell Fluid Flow Over a Stretching Sheet with Velocity Slip and Activation Energy.” Advances in Mathematical Physics 2019, 9860471, 12 pp.
  • Vijaya, K. G., Venkata Ramana Reddy, G. V. R. Krishna, and Y. H. 2020. “Heat and Mass Transfer Slip Flow of MHD Casson Liquid Past a Vertically Rotating Cone with Convective Conditions.” Advances in Mathematics: Scientific Journal 9 (10): 7999–8007. doi:10.37418/amsj.9.10.34. Corpus ID: 237440421.
  • Zhang, C., L. Zheng, X. Zhang, and G. Chen. 2015. “MHD Flow and Radiation Heat Transfer of Nanofluids in Porous Media with Variable Surface Heat Flux and Chemical Reaction.” Applied Mathematical Modelling 39: 165–181.

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