G-jitter impact on magnetohydrodynamic non-Newtonian fluid over an inclined surface: finite element simulation
From MaRDI portal
Publication:6489926
DOI10.1016/J.CJPH.2021.03.020MaRDI QIDQ6489926
Sajjad Hussain, Liaqat Ali, Tahir Kamran, Bagh Ali, C. S. K. Raju
Publication date: 22 April 2024
Published in: Chinese Journal of Physics (Taipei) (Search for Journal in Brave)
Non-Newtonian fluids (76A05) Finite difference methods applied to problems in fluid mechanics (76M20) Boundary-layer theory, separation and reattachment, higher-order effects (76D10) Particle methods and lattice-gas methods (76M28) Free convection (76R10)
Cites Work
- MHD stagnation point flow of a micropolar fluid toward a vertical plate with a convective surface boundary condition
- Numerical study of heat transfer characteristics of the micropolar boundary layer near a stagnation point on a moving wall
- g-jitter free convection flow in the stagnation-point region of a three-dimensional body
- Mesoscopic simulation of double-diffusive mixed convection of pseudoplastic fluids in an enclosure with sinusoidal boundary conditions
- Simulation of vertical and horizontal magnetic fields effects on non-Newtonian power-law fluids in an internal flow using FDLBM
- Effects MHD and heat generation on mixed convection flow of Jeffrey fluid in microgravity environment over an inclined stretching sheet
- Simple microfluids
- Theory of thermomicrofluids
- The effect of g -jitter on heat transfer
- Streaming flows due to g-jitter-induced natural convection
This page was built for publication: G-jitter impact on magnetohydrodynamic non-Newtonian fluid over an inclined surface: finite element simulation