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Electromagnetic and radiative Casson fluid flow over a permeable vertical Riga-plate

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The convective Casson fluid flow past a Riga plate is investigated theoretically. The flow properties are elucidated through the analytical solutions of transport equations which are acquired by adopting the Laplace transform technique. This study mainly focuses on nonlinear flow characteristics under radiation, permeability and the wall parallel Lorentz force. The positive modified Hartmann number refers to the aiding flow which enhances the flow speed. The comparison between Newtonian and non-Newtonian fluid flow subject to the wall parallel Lorentz force has also been done graphically. Further, the results of this Casson fluid flow model correlated with the vertical flow under buoyancy effect.
Rocznik
Strony
987--998
Opis fizyczny
Bibliogr. 28 poz., rys., tab.
Twórcy
  • Department of Mathematics, College of Engineering, Guindy, Anna University, Chennai, Tamil Nadu, India
  • Department of Mathematics, College of Engineering, Guindy, Anna University, Chennai, Tamil Nadu, India
Bibliografia
  • 1. Abbas T., Ayub M., Bhatti M.M., Rashidi M.M., Ali M.E., 2016, Entropy generation on nanofluid flow through a horizontal Riga plate, Entropy, 223, DOI: 10.3390/e18060223
  • 2. Ahmad A., Asghar S., Afzal S., 2016, Flow of nanofluid past a Riga plate, Journal of Magnetism and Magnetic Materials, 402, 44-48
  • 3. Ahmad R., Mustafa M., Turkyilmazoglu M., 2017, Buoyancy effects on nanofluid flow past a convectively heated vertical Riga-plate: A numerical study, International Journal of Heat and Mass Transfer, 111, 827-835
  • 4. Arthur E.M., Seini I.Y., Bortteir L.B., 2015, Analysis of Casson fluid flow over a vertical porous surface with chemical reaction in the presence of magnetic field, Journal of Applied Mathematics and Physics, 3, 713-723
  • 5. Brewster M.Q., 1992, Thermal Radiative Transfer and Properties, John Wiley & Sons
  • 6. Chhabra R.P., Richardson J.F., 1999, Non-Newtonian Flow in the Process Industries; Fundamentals and Engineering Applications, Butterworth-Heinemann Publishing
  • 7. Cross M.M., 1965, Rheology of non-Newtonian fluids: A new flow equation for pseudoplastic systems, Journal of Colloid Science, 20, 417-437
  • 8. Dubovikova N., Karcher C., Kolesnikov C., 2014, Electromagnetic flow control in liquid metals using Lorentz force techniques, Proceedings in Applied Mathematics and Mechanics, 14, 721-722
  • 9. England W.G., Emery A.F., 1969, Thermal radiation effects on the laminar free convection boundary layer of an absorbing gas, Journal of Heat Transfer, 91, 1, 37-44, DOI: 10.1115/1.3580116
  • 10. Ganesh Kumar K., Haq R., Rudraswamy N.G., Gireesha B.J., 2017, Effects of mass transfer on MHD three dimensional flow of a Prandtl liquid over a flat plate in the presence of chemical reaction, Results in Physics, 7, 3465-3471
  • 11. Gebhart B., Pera L., 1971, The nature of vertical natural convection flows resulting from the combined buoyancy effects of thermal and mass diffusion, International Journal of Heat and Mass Transfer, 14, 2025-2050
  • 12. Hari R.K., Patel H.R., 2016, Radiation and chemical reaction effects on MHD Casson fluid flow past an oscillating vertical plate embedded in porous medium, Alexandria Engineering Journal, 55, 583-595
  • 13. Hayat T., Abbas T., Ayub M., Farooq M., Alsaedi A., 2016, Flow of nanofluid due to convectively heated Riga plate with variable thickness, Journal of Molecular Liquids, 222, 854-862
  • 14. Hayat T., Khan M., Imtiaz M., Alsaedi A., 2017a, Squeezing flow past a Riga plate with chemical reaction and convective conditions, Journal of Molecular Liquids, 225, 569-576
  • 15. Hayat T., Khan M., Khan M.I., Alsaedi A., Ayub M., 2017b, Electromagneto squeezing rotational flow of Carbon (C)-Water (H2O) kerosene oil nanofluid past a Riga plate: A numerical study, PLOS ONE, 12
  • 16. Hussanan A., Salleh M.Z., Tahar R.M., Khan I., 2014, Unsteady boundary layer flow and heat transfer of a Casson fluid past an oscillating vertical plate with Newtonian heating, PLOS ONE, 9
  • 17. Ibrahim S.Y., Mankinde O.D., 2011, Radiation effect on chemically reacting magneto hydrodynamics (MHD) boundary layer flow of heat and mass transfer through a porous vertical flat plate, International Journal of Physical Sciences, 6, 1508-1516
  • 18. Kumar V.R., Raju M.C., Raju G.S.S., Varma S.V.K., 2016, Thermal diffusive free convective radiating flow over an impulsively started vertical porous plate in conducting field, Journal of Physical Mathematics, 7, 1
  • 19. Magyari E., Pantokratoras A., 2011, Aiding and opposing mixed convection flows over the Riga-plate, Communications in Nonlinear science and Numerical Simulation, 16, 3158-3167
  • 20. Makanda G., Shaw S., Sibanda P., 2015, Effects of radiation on MHD free convection of a Casson fluid from a horizontal circular cylinder with partial slip in non-Darcy porous medium with viscous dissipation, Boundary Value Problems, 2015, 75
  • 21. Pantokratoras A., Magyari E., 2009, EMHD free-convection boundary-layer flow from a Riga- -plate, Journal of Engineering Mathematics, 64, 303-315
  • 22. Pattnaik J.R., Dash G.C., Singh S., 2017, Radiation and mass transfer effects on MHD flow through porous medium past an exponentially accelerated inclined plate with variable temperature, Ain Shams Engineering Journal, 8, 67-75
  • 23. Pramanik S., 2014, Casson fluid flow and heat transfer past an exponentially porous stretching surface in presence of thermal radiation, Ain Shams Engineering Journal, 5, 205-212
  • 24. Raju C.S.K., Sandeep N., Sugunamma V., Babu M.J., Reddy J.V.R., 2016, Heat and mass transfer in magnetohydrodynamic Casson fluid over an exponentially permeable stretching surface, Engineering Science and Technology, an International Journal, 19, 45-52, DOI: 10.1016/j.jestch.2016.06.008
  • 25. Ramesh G.K., Prasannakumara B.C., Gireesha B.J., Rashidi M.M., 2016, Casson fluid flow near the stagnation point over a stretching sheet with variable thickness and radiation, Journal of Applied Fluid Mechanics, 9, 1115-1122
  • 26. Soundalgekar V.M., Ganesan P., 1981, Finite difference analysis of transient free convection with mass transfer on an isothermal vertical flat plate, International Journal of Engineering Science, 19, 757-770
  • 27. Ullah I., Bhattacharyya I., Shafie S., Khan I., 2016, Unsteady MHD mixed convection slip flow of Casson fluid over nonlinearly stretching sheet embedded in a porous medium with chemical reaction, thermal radiation, heat generation/absorption and convective boundary conditions, PLOS ONE, DOI: 10.1371/journal.pone.0165348
  • 28. Venkatesan J., Sankar D.S., Hemalatha K., Yatim Y., 2014, Mathematical analysis of Casson fluid model for blood rheology in stenosed narrow arteries, Journal of Applied Mathematics, DOI: 10.1155/2013/583809
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8b876f95-5bf2-4c43-b8a0-3e3e63a50e72
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