Exact and Fractional Solution of MHD Generalized Couette Hybrid Nanofluid Flow with Mittag-Leffler and Power Law Kernel

Faculty Engineering Year: 2024
Type of Publication: ZU Hosted Pages:
Authors:
Journal: International Journal of Thermofluids ELSEVIER Volume:
Keywords : Exact , Fractional Solution , , Generalized Couette Hybrid    
Abstract:
This study investigates the complex behavior of Jeffrey nanofluid flow in a porous oscillating microchannel under the influence of magnetohydrodynamic (MHD) effects. The research explores how magnetic field distortions lead to diverse accumulation patterns of nanofluid particles, a phenomenon attributed to homogeneous magnetization in fluid dynamics. Nanoparticles ranging from 0.25 % to 0.5 % (low and inexpensive concentrations) are remarkably consistent for best results in most machining procedures. Different concentrations of various nanomaterial's is utilized (φ1 = φ2 = 0.01,  0.02,  0.03,  0.04) to make the simple nanfluid and hybrid nanofluid suspensions. By employing fractal-fractional derivatives governed by power law, a mathematical model developed to describe the time-varying, compressible MHD flow of Jeffrey nanofluid. The model incorporates the effects of heat transfer, pressure, and magnetic fields on the fluid dynamics. A novel fractional approach utilizing the Laplace transform is applied to solve the fractal MHD hybrid-fluid model integrated into a porous medium. The study reveals velocity flow decrease with increasing Reynolds numbers but increase with channel inclination. Additionally, both the Darcy number and magnetic field orientation enhance heat transfer rates. In addition, the velocity profile enhanced by the hybrid nanofluid suspension as compared to simple nanofluid flow. The research validates its findings by demonstrating the convergence of fractional and numerical solution methods. Furthermore, the study compares the performance of different hybrid nanofluids, concluding that water-based (H2O + GO + MoS2) hybrid fluids exhibit slightly superior characteristics compared to (CMC + GO + MoS2) hybrid nanofluids.
   
     
 
       

Author Related Publications

  • Ahmed Mohamed Elsayed Abdelwahab Abied, "Improve six-sigma management by forecasting production quantity using image verification quality tool", International journal of advances in engineering and technology, 2011 More
  • Ahmed Mohamed Elsayed Abdelwahab Abied, "Minimize Make-span for machine sequencing of jobs with precedence constraints", Academy of scientific research & Technology, Egypt, 2003 More
  • Ahmed Mohamed Elsayed Abdelwahab Abied, "Application Of Cellular Manufacturing Formation To The Automotive Industries", AL-Azhar University Engineering Journal AUEJ, 2004 More
  • Ahmed Mohamed Elsayed Abdelwahab Abied, "Layout Designs In Cellular Manufacturing", AL-Azhar University Engineering Journal AUEJ, 2004 More
  • Ahmed Mohamed Elsayed Abdelwahab Abied, "Developing LEAN manufacturing using Automatic identification and data capture(AIDC)", AUC-Egypt Engineering 5th International Conference, Egypt, 2006 More

Department Related Publications

  • Yehya Ibrahim Mesalam Ali, "Fuzzy Goal Programming Approach for Multi Objective Decision Making Problems", Alexandria, Egypt, 2004 More
  • Mohamed Adel Albaz Mansour Ibrahiem Elmansy, "Fuzzy Goal Programming Approach for Multi Objective Decision Making Problems", Alexandria, Egypt, 2004 More
  • Mohammed Sameh Ali Ibrahym , "Fuzzy Goal Programming Approach for Multi Objective Decision Making Problems", Alexandria, Egypt, 2004 More
  • Yehya Ibrahim Mesalam Ali, "AN INTEGRATED APPROACH FOR MULTI-OBJECTIVE PRODUCTION AND DISTRIBUTION PLANNING IN SUPPLY CHAIN MANAGEMENT", The Egyptian Int. J. of Eng. Sci. and Technology, 2011 More
  • Mohamed Adel Albaz Mansour Ibrahiem Elmansy, "AN INTEGRATED APPROACH FOR MULTI-OBJECTIVE PRODUCTION AND DISTRIBUTION PLANNING IN SUPPLY CHAIN MANAGEMENT", The Egyptian Int. J. of Eng. Sci. and Technology, 2011 More
Tweet