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On oscillatory rotating convection of a couple‐stress fluid with helical force
Linear and weakly nonlinear stability analyses of thermosolutal convection in a couple‐stress fluid with effects of helical force and rotation are performed. The governing nondimensional equations are solved using the normal modes. We have shown the effect of the helical force parameter, solutal Rayleigh number, Couple stress parameter, Lewis number, Taylor number, and Prandtl number on stationary and oscillatory convection regions and presented graphically. Solutal Rayleigh number, Couple stress parameter, Lewis number, and Taylor number have a stabilizing effect on the system whereas the helical force parameter has a destabilizing effect on the system. To study heat transport by convection we have derived the Ginzburg–Landau equation.
On oscillatory rotating convection of a couple‐stress fluid with helical force
Linear and weakly nonlinear stability analyses of thermosolutal convection in a couple‐stress fluid with effects of helical force and rotation are performed. The governing nondimensional equations are solved using the normal modes. We have shown the effect of the helical force parameter, solutal Rayleigh number, Couple stress parameter, Lewis number, Taylor number, and Prandtl number on stationary and oscillatory convection regions and presented graphically. Solutal Rayleigh number, Couple stress parameter, Lewis number, and Taylor number have a stabilizing effect on the system whereas the helical force parameter has a destabilizing effect on the system. To study heat transport by convection we have derived the Ginzburg–Landau equation.
On oscillatory rotating convection of a couple‐stress fluid with helical force
Nagaraju, Jangalla (author) / Babu, Kasba Ramesh (author) / Reddy, Gundlapally Shiva Kumar (author) / Ragoju, Ravi (author)
Heat Transfer ; 52 ; 2576-2592
2023-05-01
17 pages
Article (Journal)
Electronic Resource
English
Global Stability For Double-Diffusive Convection In A Couple-Stress Fluid Saturating A Porous Medium
DOAJ | 2019
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