linear stability analysis of coriolis force on ferrothermohaline convection saturating an anisotropic porous medium with Soret effect

Authors

  • R. Sekar

    Department of Mathematics, Pondicherry Engineering College, Pillaichavady, Puducherry - 605 014. India
  • K. Raju

    Department of Mathematics, Pondicherry Engineering College, Pillaichavady, Puducherry - 605 014. India
  • R. Vasanthakumari

How to Cite

Sekar, R., Raju, K., & Vasanthakumari, R. (2013). linear stability analysis of coriolis force on ferrothermohaline convection saturating an anisotropic porous medium with Soret effect. Global Journal of Mathematical Analysis, 1(2), 37-47. https://doi.org/10.14419/gjma.v1i2.858

Received date: April 23, 2013

Accepted date: May 10, 2013

Published date: May 17, 2013

DOI:

https://doi.org/10.14419/gjma.v1i2.858

Abstract

Instability of themocovection in a multi-component fluid has wide range of applications in ionospheric, geothermal and industries. In this analysis, the effect of rotation and vertical anisotropy on Soret-driven thermoconvective instability in a ferrofluid has been studied. The fluid layer is assumed to be horizontal and is heated from below and salted from above. In momentum equation, the effect of both substantial derivatives and coriolis terms are considered. The resulting eigen value problem is solved using Brinkman model. A linear stability analysis is used for both stationary and oscillatory instabilities for different parameters for which normal mode technique is applied. The effect of rotation tends to stabilize the system and anisotropy and Soret effects tend to destabilize the system.

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How to Cite

Sekar, R., Raju, K., & Vasanthakumari, R. (2013). linear stability analysis of coriolis force on ferrothermohaline convection saturating an anisotropic porous medium with Soret effect. Global Journal of Mathematical Analysis, 1(2), 37-47. https://doi.org/10.14419/gjma.v1i2.858

Received date: April 23, 2013

Accepted date: May 10, 2013

Published date: May 17, 2013