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August 17, 2025Canadian Journal of Physics1 citations

Thermohaline convection in a couple stress fluid layer under varying gravity conditions

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SCShalu ChoudharyRDReeta DeviVCVishal Singh Chandel

Key Points

  • Critical stability thresholds in couple stress fluids are influenced by varying gravity conditions, delaying convection onset.
  • Methodologically, the linear theory and energy approaches yielded consistent results across boundary conditions in the analysis.
  • Applying normal mode techniques confirms the significant disruption of convection by couple stresses and solute gradients.
  • These insights support modeling for geothermal circulation in Earth's mantle and fluid transport in low-gravity space environments.

Abstract

Thermohaline convection in a couple stress fluid layer under variable gravity conditions is analyzed using both linear theory and energy methods to gain insight into fluid behavior relevant to geophysical and space science applications. The normal mode technique applied to the linearized system yields critical values consistent with those obtained via the energy approach across all considered boundary conditions. The presence of couple stresses and solute gradients counteracts the destabilizing thermal gradient, thereby delaying the onset of convection. Variations in the gravity parameter significantly influence the stability threshold. These findings provide a unified framework that combines double diffusion, couple stresses, and variable gravity, with practical relevance to modeling stratified fluid layers in Earth's mantle, subsurface geothermal circulation, and biological or fluid transport processes under low-gravity environments such as space missions.

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Cite This Study

Choudhary et al. (2025) studied this question.

synapsesocial.com/papers/68a36c270a429f7973330112https://doi.org/10.1139/cjp-2025-0014
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