Home
  • English
  • ÄŒeÅ¡tina
  • Deutsch
  • Español
  • Français
  • Gàidhlig
  • LatvieÅ¡u
  • Magyar
  • Nederlands
  • Português
  • Português do Brasil
  • Suomi
  • Log In
    New user? Click here to register. Have you forgotten your password?
Home
  • Browse Our Collections
  • Publications
  • Researchers
  • Research Data
  • Institutions
  • Statistics
    • English
    • ÄŒeÅ¡tina
    • Deutsch
    • Español
    • Français
    • Gàidhlig
    • LatvieÅ¡u
    • Magyar
    • Nederlands
    • Português
    • Português do Brasil
    • Suomi
    • Log In
      New user? Click here to register. Have you forgotten your password?
  1. Home
  2. Research Output and Publications
  3. Institute of Engineering Mathematics (IMK)
  4. Journals Articles
  5. Dual solutions of boundary layer flow and heat transfer in hybrid nanofluid over a stretching/shrinking cylinder
 
Options

Dual solutions of boundary layer flow and heat transfer in hybrid nanofluid over a stretching/shrinking cylinder

Journal
Journal of Advanced Research in Fluid Mechanics and Thermal Sciences
ISSN
2289-7879
Date Issued
2023
Author(s)
Nor Ashikin Abu Bakar
Universiti Malaysia Perlis
Rohana Abdul Hamid
Universiti Malaysia Perlis
Najwa Najib
Universiti Sains Islam Malaysia
DOI
10.37934/arfmts.104.2.174183
Handle (URI)
https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/article/view/1784
https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/index
https://hdl.handle.net/20.500.14170/15173
Abstract
The boundary layer flow over a stretching/shrinking cylinder in hybrid nanofluid with the effects of suction, partial slip and convective boundary condition is studied. Hybrid nanoparticles Al2O3 and TiO2 with water as based fluid are considered in the study. The partial differential equations are transformed to ordinary differential equations by employing the similarity variables. The numerical results are obtained using the bvp4c solver in MATLAB software. The influence of nanoparticles volume fraction (Al2O3-TiO2 in water-based fluid), curvature parameter, suction parameter, partial slip parameter and Biot number on the velocity profile, temperature profile, skin friction coefficient and heat transfer rate are discussed. The numerical results indicate that for shrinking surface case, the dual solutions exist for a certain range of curvature parameter and suction parameter.
Subjects
  • Boundary layer flow

  • Dual solutions

  • Hybrid nanofluid

  • Stretching/Shrinking ...

File(s)
Dual Solutions of Boundary Layer Flow and Heat Transfer.pdf (549.06 KB)
google-scholar
Views
Downloads
  • About Us
  • Contact Us
  • Policies