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Tytuł artykułu

Effect of suspensed particles, magnetic field and rotation on thermal stability of ferromagnetic fluids

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The effect of suspended particles, magnetic field, magnetization and rotation on the thermal stability of a ferromagnetic fluid heated from below is considered. Using a linearized stability theory and normal mode analysis for a fluid layer between two free boundaries, an exact solution is obtained. A dispersion relation governing the effects of suspended particles, magnetic field, magnetization and rotation is derived. For the case of stationary convection, it is found that a suspended particle has a destabilizing effect whereas rotation and magnetization have a stabilizing effect on the system. The magnetic field has a stabilizing effect on the system under certain conditions. The effects of various parameters on the thermal stability are depicted graphically also and the results are in agreement with analytical solutions. The principle of exchange of stabilities is found to hold true for the ferromagnetic fluid heated from below in the absence of rotation and the magnetic field. The oscillatory modes are introduced due to the presence of rotation and the magnetic field which were non-existent in their absence.
Rocznik
Strony
1109--1122
Opis fizyczny
Bibliogr. 21 poz., wykr.
Twórcy
autor
  • Department of Mathematics Jaypee Institute of Information Technology, A-10, Sector-62, Noida (UP) - 201307, INDIA, amrish_juit@yahoo.com
Bibliografia
  • Aggarwal A.K. and Prakash K. (2009): Effect of suspended particles and rotation on thermal instability of ferrofluids. - Int. J. of Applied Mechanics and Engineering, vol.14, pp.55-66.
  • Bailey R.L. (1983): Lesser known applications of ferrofluids. - J. Magn. Mater., vol.39, pp.178-182.
  • Chandrasekhar S. (1981): Hydrodynamic and Hydromagnetic Stability. - London: Oxford University Press.
  • Finlayson B.A. (1970): Convective instability of ferromagnetic fluids. - J. Fluid Mach., vol.40, pp.753-767.
  • Gupta Das M. and Gupta A.S. (1979): Convective instability of a layer of a ferromagnetic fluid rotating about a vertical axis. - Int. J. of Eng. Sci., vol.17, No.3, pp.271-277.
  • Hathaway D.B. (1979): Use of ferrofluids in moving coil loudspeakers. - dB-Sound Eng. Mag., vol.13, pp.42-44.
  • Lalas D.P. and Carmi S. (1971): Thermoconvective stability of ferrofluids. - Phys. Fluids, vol.14, pp.436-437.
  • Morimoto Y., Akimoto M. and Yotsumoto Y. (1982): Dispersion state of protein - stabilized magnetic emulsions. - Chem. Pharm. Bull., vol.30, pp.3024-3027.
  • Odenbach S. (2002): Magnetoviscous effects in ferrfluids. - Berlin, Heidelberg: Springer-Verlag.
  • Penfield P. and Haus H.A. (1967): Electrodynamics of moving media. - Cambridge, Massachusetts: MIT Press.
  • Polevikov V.K. (1997): Fluid Dyn., Stability of a magnetic fluid under the action of an external pressure drop. - Vol.32, No.3, pp.457.
  • Rosenwieg R.E. (1985): Ferrohydrodynamics. - Cambridge: Cambridge University Press.
  • Ramanathan A. and Suresh G. (2004): Effect of magnetic field dependent viscosity and anisotropy of porous medium on ferroconvection. - Int. J. Eng. Sci., vol.42, No.3-4, pp.411-425.
  • Shliomis M.I. (1974): Magnetic fluids. - Soviet Phys. Uspekhi (Engl. Transl.), vol.17, pp.153-169.
  • Sharma R.C. and Aggarwal A.K. (2006): Effect of compressibility and suspended particles on thermal convection in a Walters'elastico-viscous fluid in hydromagnetics. - Int. J. of Applied Mechanics and Engineering, vol.11, pp.391-399.
  • Sharma R.C., Prakash K. and Dube S.N. (1976): Effect of suspended particles on the onset of Benard convection in hydromagnetics. - Acta Physica Hungarica, vol.40, pp.3-10.
  • Sunil, Divya and Sharma V. (2005): Effect of dust particles on a rotating ferromagnetic fluid heated from below saturating a porous medium. - J. of Coll. and Inter. Sci., vol.291, No.1, pp.152-161.
  • Sunil, Sharma Anu and Shandil R.C. (2006): Effect of rotation on a ferromagnetic fluid heated and soluted from below in the presence of dust particles. - Applied Mathematics and Computation, vol.177, No.2, pp.614-628.
  • Venkatasubramanium S. and Kaloni P.N. (1994): Effect of rotation on thermoconvective instability of a horizontal layer of ferrofluids. - Int. J. of Eng. Sci., vol.32, No.2, pp.237-256.
  • Volz M.P. and Mazuruk K. (1999): Thermoconvective instability in a rotating magnetic field. - Int. J. of Heat and Mass Transfer, vol.42, No.6, pp.1037-1045.
  • Zebib A. (1996): Thermal convection in a magnetic fluid. - J. Fluid Mech., vol.321, pp.121-136.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ5-0028-0001
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