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Study of Heat and Mass Transport in Bénard-Darcy Convection with G-Jitter and Variable Viscosity Liquids in a Porous Layer with Internal Heat Source
by
Srivastava, A.
, Bhadauria, B. S.
, Singh, A. K.
in
Amplitudes
/ Convection
/ Gravity effects
/ Heat
/ Heat transfer
/ Landau-Ginzburg equations
/ Mass transfer
/ Mass transport
/ Modulation
/ Porous media
/ Power series
/ Rheological properties
/ Series expansion
/ Temperature dependence
/ Vibration
2018
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Study of Heat and Mass Transport in Bénard-Darcy Convection with G-Jitter and Variable Viscosity Liquids in a Porous Layer with Internal Heat Source
by
Srivastava, A.
, Bhadauria, B. S.
, Singh, A. K.
in
Amplitudes
/ Convection
/ Gravity effects
/ Heat
/ Heat transfer
/ Landau-Ginzburg equations
/ Mass transfer
/ Mass transport
/ Modulation
/ Porous media
/ Power series
/ Rheological properties
/ Series expansion
/ Temperature dependence
/ Vibration
2018
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Do you wish to request the book?
Study of Heat and Mass Transport in Bénard-Darcy Convection with G-Jitter and Variable Viscosity Liquids in a Porous Layer with Internal Heat Source
by
Srivastava, A.
, Bhadauria, B. S.
, Singh, A. K.
in
Amplitudes
/ Convection
/ Gravity effects
/ Heat
/ Heat transfer
/ Landau-Ginzburg equations
/ Mass transfer
/ Mass transport
/ Modulation
/ Porous media
/ Power series
/ Rheological properties
/ Series expansion
/ Temperature dependence
/ Vibration
2018
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Study of Heat and Mass Transport in Bénard-Darcy Convection with G-Jitter and Variable Viscosity Liquids in a Porous Layer with Internal Heat Source
Journal Article
Study of Heat and Mass Transport in Bénard-Darcy Convection with G-Jitter and Variable Viscosity Liquids in a Porous Layer with Internal Heat Source
2018
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Overview
In this research article, we investigated the weakly non-linear effect of gravity modulation for the temperature dependent viscous fluid in a horizontal porous layer in the presence of internal heat source. We use power series expansion in terms of the amplitude of gravity modulation, which is considered to be small for double-diffusive convection in porous media. We graphically show the effect of internal heat source, solute Rayleigh number, Lewis number, Vadász number, thermo-rheological parameter, the amplitude of gravity modulation, the frequency of modulation on the heat and mass transfer using Ginzburg-Landau equation. The effect of gravity modulation is found significant and is more effective for the low values of frequency of modulation.
Publisher
Isfahan University of Technology
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