The onset of penetrative Ferro-Thermal-Convection (FTC) in a ferromagnetic fluid via internal heating studied for high porosity anisotropic horizontal porous layers. The eigen value problem is solved using a Galerkin technique based on the weighted residual method. The boundary conditions are included lower and upper boundary rigid-isothermal case. The governing parameters for the problem are the ratio of thermal diffusivity (η) increases is to postponement the onset of FTC, while strength of magnetic number (M1), non-linearity of fluid magnetization (M3), Darcy number (Da) and strength of internal heat source ( Ns) increases is to destabilize the system. The buoyancy and magnetic forces complement with each other and always found Rtc < Rmc. The critical Rayleigh number Rtc for the case of η = 1 and η ≠ 1 obtained by the analysis agreed well with of Shiina and Hishida [1] in the absence of magnetic field.
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10 December 2020
INTERNATIONAL CONFERENCE ON SMART SUSTAINABLE MATERIALS AND TECHNOLOGIES: ICSSMT-2020
12–12 August 2020
Madurai, India
Research Article|
December 10 2020
Penetrative ferro-thermal-convection in high porosity anisotropic porous layer via internal heating
Savitha Y. L.;
Savitha Y. L.
a)
1
Department of Mathematics, Dr. Ambedkar Institute of Technology
, Bengaluru-560056, India
a)Corresponding author:[email protected]
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C. E. Nanjundappa;
C. E. Nanjundappa
b)
2
Department of Mathematics, Dr. Ambedkar Institute of Technology
, Bengaluru-560056, India
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I. S. Shivakumara
I. S. Shivakumara
c)
3
Department of Mathematics, Bangalore University
, Bengaluru 560001, India
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AIP Conf. Proc. 2297, 020008 (2020)
Citation
Savitha Y. L., C. E. Nanjundappa, I. S. Shivakumara; Penetrative ferro-thermal-convection in high porosity anisotropic porous layer via internal heating. AIP Conf. Proc. 10 December 2020; 2297 (1): 020008. https://doi.org/10.1063/5.0029842
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