Relative Study on the Incompressible Fluid Flow Past a Porous Plate with and Without the Radiation Effect

Authors

  • R. Kuzhali

  • R. Dharani

How to Cite

Kuzhali, R., & Dharani, R. (2018). Relative Study on the Incompressible Fluid Flow Past a Porous Plate with and Without the Radiation Effect. International Journal of Engineering and Technology, 7(4.10), 653-656. https://doi.org/10.14419/ijet.v7i4.10.21305

Received date: October 8, 2018

Accepted date: October 8, 2018

Published date: October 2, 2018

DOI:

https://doi.org/10.14419/ijet.v7i4.10.21305

Keywords:

Periodic suction, Porous plate, Radiation field, Magnetic field.

Abstract

This paper focuses to compare the main flow velocity and temperature distribution in a three dimensional magneto hydrodynamic flow of a viscous incompressible fluid, past a vertical porous plate subjected to a periodic suction with and without the radiation effect. Governing equations are solved using perturbation technique and the results are discussed, on the results of the approximate solutions for velocity and temperature fields.

 

References

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    [2] Guria.M, Jana.R.N, Hydrodynamic effect on the three dimensional flow past a vertical porous plate. Internat.J. Math. & and Math. Sci.,Vol.20, (2005), pp. 3359-3372.

    [3] Guria.M, Kanch.A.K, Jana.R.N, Hydromagnetic effect on the three dimensional flow past a vertical porous plate. Journal of Physical Science, Vol.10, (2006), pp. 44-54.

    [4] Singh.K.D, Hydromagnetic effect on the three dimensional flow past a porous plate, ZAMP Vol.41, (1990), pp. 441-446.

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    [6] Singh.P, Sharma.V.P, Misra.U.N, Three dimensional fluctuating flow and heat transfer along a plate with suction. Inc. Heat Mass Transfer Vol.21, (1978), pp.1117-1123.

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How to Cite

Kuzhali, R., & Dharani, R. (2018). Relative Study on the Incompressible Fluid Flow Past a Porous Plate with and Without the Radiation Effect. International Journal of Engineering and Technology, 7(4.10), 653-656. https://doi.org/10.14419/ijet.v7i4.10.21305

Received date: October 8, 2018

Accepted date: October 8, 2018

Published date: October 2, 2018