Acceso abierto

Penetrative convection due to absorption of radiation in a magnetic nanofluid saturated porous layer


Cite

Buongiorno, J. (2006). Convective transport in nanofluids. Journal of heat transfer, 128(3), 240-250.BuongiornoJ.2006Convective transport in nanofluidsJournal of heat transfer128324025010.1115/1.2150834Search in Google Scholar

Nield, D.A., Kuznetsov, A.V. (2009). Thermal instability in a porous medium layer saturated by a nanofluid. International Journal of Heat and Mass Transfer, 52(25-26), 5796-5801.NieldD.A.KuznetsovA.V.2009Thermal instability in a porous medium layer saturated by a nanofluidInternational Journal of Heat and Mass Transfer5225-265796580110.1016/j.ijheatmasstransfer.2009.07.023Search in Google Scholar

Nield, D.A., Kuznetsov, A.V. (2014). Thermal instability in a porous medium layer saturated by a nanofluid: a revised model. International Journal of Heat and Mass Transfer, 68, 211-214.NieldD.A.KuznetsovA.V.2014Thermal instability in a porous medium layer saturated by a nanofluid: a revised modelInternational Journal of Heat and Mass Transfer6821121410.1016/j.ijheatmasstransfer.2013.09.026Search in Google Scholar

Yadav, D., Agarwal, G., Lee, J. (2016). Thermal instability in a rotating nanofluid layer: a revised model. Ain Shams Engineering Journal, 7(1), 431-440.YadavD.AgarwalG.LeeJ.2016Thermal instability in a rotating nanofluid layer: a revised modelAin Shams Engineering Journal7143144010.1016/j.asej.2015.05.005Search in Google Scholar

Bhadauria, B.S., Agarwal, S. (2011). Convective transport in a nanofluid saturated porous layer with thermal non equilibrium model. Transport in porous media, 88(1), 107-131.BhadauriaB.S.AgarwalS.2011Convective transport in a nanofluid saturated porous layer with thermal non equilibrium modelTransport in porous media88110713110.1007/s11242-011-9727-8Search in Google Scholar

Yadav, D., Bhargava, R., Agarwal, G. S. (2012). Boundary and internal heat source effects on the onset of Darcy-Brinkman convection in a porous layer saturated by nanofluid. International Journal of Thermal Sciences, 60, 244-254.YadavD.BhargavaR.AgarwalG. S.2012Boundary and internal heat source effects on the onset of Darcy-Brinkman convection in a porous layer saturated by nanofluidInternational Journal of Thermal Sciences6024425410.1016/j.ijthermalsci.2012.05.011Search in Google Scholar

Yadav, D., Lee, J., Cho, H.H. (2015). Brinkman convection induced by purely internal heating in a rotating porous medium layer saturated by a nanofluid. Powder Technology, 286, 592-601.YadavD.LeeJ.ChoH.H.2015Brinkman convection induced by purely internal heating in a rotating porous medium layer saturated by a nanofluidPowder Technology28659260110.1016/j.powtec.2015.08.048Search in Google Scholar

Yadav, D., Wang, J. (2018). Convective Heat Transport in a Heat Generating Porous Layer Saturated by a Non-Newtonian Nanofluid. Heat Transfer Engineering, 1-20.YadavD.WangJ.2018Convective Heat Transport in a Heat Generating Porous Layer Saturated by a Non-Newtonian NanofluidHeat Transfer Engineering12010.1080/01457632.2018.1470298Search in Google Scholar

Yadav, D. (2018). The Influence of Pulsating Throughflow on the Onset of Electro-Thermo-Convection in a Horizontal Porous Medium Saturated by a Di-electric Nanofluid. Journal of Applied Fluid Mechanics, 11(6), 1679-1689.YadavD.2018The Influence of Pulsating Throughflow on the Onset of Electro-Thermo-Convection in a Horizontal Porous Medium Saturated by a Di-electric NanofluidJournal of Applied Fluid Mechanics1161679168910.29252/jafm.11.06.29048Search in Google Scholar

Krishnamurti, R. (1998). Convection induced by selective absorption of radiation: a laboratory model of conditional instability. Dynamics of atmospheres and oceans, 27(1-4), 367-382.KrishnamurtiR.1998Convection induced by selective absorption of radiation: a laboratory model of conditional instabilityDynamics of atmospheres and oceans271-436738210.1016/S0377-0265(97)00020-1Search in Google Scholar

Hill, A.A. (2004). Penetrative convection induced by the absorption of radiation with a nonlinear internal heat source. Dynamics of atmospheres and oceans, 38(1), 57-67.HillA.A.2004Penetrative convection induced by the absorption of radiation with a nonlinear internal heat sourceDynamics of atmospheres and oceans381576710.1016/j.dynatmoce.2004.03.002Search in Google Scholar

Straughan, B. (2002). Global stability for convection induced by absorption of radiation. Dynamics of atmospheres and oceans, 35(4), 351-361.StraughanB.2002Global stability for convection induced by absorption of radiationDynamics of atmospheres and oceans35435136110.1016/S0377-0265(02)00051-9Search in Google Scholar

Hill, A.A. (2003). Convection due to the selective absorption of radiation in a porous medium. Continuum Mechanics and Thermodynamics, 15(5), 451-462.HillA.A.2003Convection due to the selective absorption of radiation in a porous mediumContinuum Mechanics and Thermodynamics15545146210.1007/s00161-003-0125-5Search in Google Scholar

Hill, A.A. (2004). Convection induced by the selective absorption of radiation for the brinkman model. Continuum Mechanics and Thermodynamics, 16(1-2), 43-52.HillA.A.2004Convection induced by the selective absorption of radiation for the brinkman modelContinuum Mechanics and Thermodynamics161-2435210.1007/s00161-003-0140-6Search in Google Scholar

Chang, M.H. (2004). Stability of convection induced by selective absorption of radiation in a fluid overlying a porous layer. Physics of Fluids, 16(10), 3690-3698.ChangM.H.2004Stability of convection induced by selective absorption of radiation in a fluid overlying a porous layerPhysics of Fluids16103690369810.1063/1.1789551Search in Google Scholar

Gupta, U., Ahuja, J., Wanchoo, R. (2013). Magneto convection in a nanofluid layer. International Journal of Heat and Mass Transfer, 64, 1163-1171.GuptaU.AhujaJ.WanchooR.2013Magneto convection in a nanofluid layerInternational Journal of Heat and Mass Transfer641163117110.1016/j.ijheatmasstransfer.2013.05.035Search in Google Scholar

Yadav, D., Bhargava, R., Agarwal, G. S. (2013). Thermal instability in a nanofluid layer with a vertical magnetic field. Journal of Engineering Mathematics, 80(1), 147-164.YadavD.BhargavaR.AgarwalG. S.2013Thermal instability in a nanofluid layer with a vertical magnetic fieldJournal of Engineering Mathematics80114716410.1007/s10665-012-9598-1Search in Google Scholar

Murthy, P. V. S. N., RamReddy, C., Chamkha, A. J., Rashad, A. M. (2013). Magnetic effect on thermally stratified nanofluid saturated non-Darcy porous medium under convective boundary condition. International Communications in Heat and Mass Transfer, 47, 41-48.MurthyP. V. S. N.RamReddyC.ChamkhaA. J.RashadA. M.2013Magnetic effect on thermally stratified nanofluid saturated non-Darcy porous medium under convective boundary conditionInternational Communications in Heat and Mass Transfer47414810.1016/j.icheatmasstransfer.2013.06.001Search in Google Scholar

Yadav, D., Bhargava, R., Agrawal, G.S., Hwang, G.S., Lee, J., Kim, M.C. (2014). Magneto-convection in a rotating layer of nanofluid. Asia-Pacific Journal of Chemical Engineering, 9(5), 663-677.YadavD.BhargavaR.AgrawalG.S.HwangG.S.LeeJ.KimM.C.2014Magneto-convection in a rotating layer of nanofluidAsia-Pacific Journal of Chemical Engineering9566367710.1002/apj.1796Search in Google Scholar

Yadav, D., Kim, C., Lee, J., Cho, H.H. (2015). Influence of magnetic field on the onset of nanofluid convection induced by purely internal heating. Computers & Fluids, 121, 26-36.YadavD.KimC.LeeJ.ChoH.H.2015Influence of magnetic field on the onset of nanofluid convection induced by purely internal heatingComputers & Fluids121263610.1016/j.compfluid.2015.07.024Search in Google Scholar

Yadav, D., Wang, J., Bhargava, R., Lee, J., Cho, H.H. (2016). Numerical investigation of the effect of magnetic field on the onset of nanofluid convection. Applied Thermal Engineering, 103, 1441-1449.YadavD.WangJ.BhargavaR.LeeJ.ChoH.H.2016Numerical investigation of the effect of magnetic field on the onset of nanofluid convectionApplied Thermal Engineering1031441144910.1016/j.applthermaleng.2016.05.039Search in Google Scholar

Sheikholeslami, M. (2018). CuO-water nanofluid flow due to magnetic field inside a porous media considering Brownian motion. Journal of Molecular Liquids, 249, 921-929.SheikholeslamiM.2018CuO-water nanofluid flow due to magnetic field inside a porous media considering Brownian motionJournal of Molecular Liquids24992192910.1016/j.molliq.2017.11.118Search in Google Scholar

Borglin, S.E., Moridis, G.J., Oldenburg, C.M. (2000). Experimental studies of the flow of ferrofluid in porous media. Transport in Porous Media, 41(1), 61-80.BorglinS.E.MoridisG.J.OldenburgC.M.2000Experimental studies of the flow of ferrofluid in porous mediaTransport in Porous Media411618010.1023/A:1006676931721Search in Google Scholar

Vaidyanathan, G., Sekar, R., Balasubramanian, R. (1991). Ferroconvective instability of fluids saturating a porous medium. International journal of engineering science, 29(10), 1259-1267.VaidyanathanG.SekarR.BalasubramanianR.1991Ferroconvective instability of fluids saturating a porous mediumInternational journal of engineering science29101259126710.1016/0020-7225(91)90029-3Search in Google Scholar

Mahajan, A., Sharma, M.K. (2014). Convection in magnetic nanofluids in porous media. Journal of Porous Media, 17(5), 439-455.MahajanA.SharmaM.K.2014Convection in magnetic nanofluids in porous mediaJournal of Porous Media17543945510.1615/JPorMedia.v17.i5.60Search in Google Scholar

Sheikholeslami, M. (2017). Numerical simulation of magnetic nanofluid natural convection in porous media. Physics Letters A, 381(5), 494-503.SheikholeslamiM.2017Numerical simulation of magnetic nanofluid natural convection in porous mediaPhysics Letters A381549450310.1016/j.physleta.2016.11.042Search in Google Scholar

Sharma, M.K., Singh, R. (2014). Linear stability analysis of double-diffusive convection in magnetic nanofluids in porous media. Journal of Porous Media, 17(10), 883-900.SharmaM.K.SinghR.2014Linear stability analysis of double-diffusive convection in magnetic nanofluids in porous mediaJournal of Porous Media171088390010.1615/JPorMedia.v17.i10.40Search in Google Scholar

Sheikholeslami, M., Rashidi, M.M., Hayat, T., Ganji, D.D. (2016). Free convection of magnetic nanofluid considering MFD viscosity effect. Journal of Molecular Liquids, 218, 393-399.SheikholeslamiM.RashidiM.M.HayatT.GanjiD.D.2016Free convection of magnetic nanofluid considering MFD viscosity effectJournal of Molecular Liquids21839339910.1016/j.molliq.2016.02.093Search in Google Scholar

Sheikholeslami, M. (2016). CVFEM for magnetic nanofluid convective heat transfer in a porous curved enclosure. The European Physical Journal Plus, 131(11), 413.SheikholeslamiM.2016CVFEM for magnetic nanofluid convective heat transfer in a porous curved enclosureThe European Physical Journal Plus1311141310.1140/epjp/i2016-16413-ySearch in Google Scholar

Mahajan, A., Sharma, M.K. (2017). Penetrative convection in magnetic nanofluids via internal heating. Physics of Fluids, 29(3), 034101.MahajanA.SharmaM.K.2017Penetrative convection in magnetic nanofluids via internal heatingPhysics of Fluids29303410110.1063/1.4977091Search in Google Scholar

Mahajan, A., Sharma, M.K. (2018). The onset of penetrative convection stimulated by internal heating in a magnetic nanofluid saturating a rotating porous medium. Canadian Journal of Physics, 96(8), 898-911.MahajanA.SharmaM.K.2018The onset of penetrative convection stimulated by internal heating in a magnetic nanofluid saturating a rotating porous mediumCanadian Journal of Physics96889891110.1139/cjp-2017-0640Search in Google Scholar

Sheikholeslami, M., Rokni, H. B. (2018). Magnetic nanofluid flow and convective heat transfer in a porous cavity considering Brownian motion effects. Physics of Fluids, 30(1), 012003.SheikholeslamiM.RokniH. B.2018Magnetic nanofluid flow and convective heat transfer in a porous cavity considering Brownian motion effectsPhysics of Fluids30101200310.1063/1.5012517Search in Google Scholar

Mahajan, A., Sharma, M.K. (2018). Penetrative convection in an internally heated layer of magnetic nanofluid saturating a porous medium. Magnetohydrodynamics, 54(3), 225-243.MahajanA.SharmaM.K.2018Penetrative convection in an internally heated layer of magnetic nanofluid saturating a porous mediumMagnetohydrodynamics54322524310.22364/mhd.54.3.4Search in Google Scholar

Vasseur, P., Satish, M.G., Robillard, L. (1987). Natural convection in a thin, inclined, porous layer exposed to a constant heat flux. International Journal of Heat and Mass Transfer, 30(3), 537-549.VasseurP.SatishM.G.RobillardL.1987Natural convection in a thin, inclined, porous layer exposed to a constant heat fluxInternational Journal of Heat and Mass Transfer30353754910.1615/IHTC8.3860Search in Google Scholar

Reda, D.C. (1983). Natural convection experiments in a liquid-saturated porous medium bounded by vertical coaxial cylinders. Journal of heat transfer, 105(4), 795-802.RedaD.C.1983Natural convection experiments in a liquid-saturated porous medium bounded by vertical coaxial cylindersJournal of heat transfer105479580210.1115/1.3245664Search in Google Scholar

Prasad, V., Kulacki, F.A., Kulkarni, A.V. (1986). Free convection in a vertical, porous annulus with constant heat flux on the inner wall-experimental results. International journal of heat and mass transfer, 29(5), 713-723.PrasadV.KulackiF.A.KulkarniA.V.1986Free convection in a vertical, porous annulus with constant heat flux on the inner wall-experimental resultsInternational journal of heat and mass transfer29571372310.1016/0017-9310(86)90123-7Search in Google Scholar

Shliomis, M.I., Smorodin, B.L. (2002). Convective instability of magnetized ferrofluids. Journal of Magnetism and Magnetic Materials, 252, 197-202.ShliomisM.I.SmorodinB.L.2002Convective instability of magnetized ferrofluidsJournal of Magnetism and Magnetic Materials25219720210.1016/S0304-8853(02)00712-6Search in Google Scholar

Mahajan, A., Sharma, M.K. (2018). Convection in a magnetic nanofluid saturating a porous medium under the influence of a variable gravity field. Engineering Science and Technology, an International Journal, 21(3), 439-450.MahajanA.SharmaM.K.2018Convection in a magnetic nanofluid saturating a porous medium under the influence of a variable gravity fieldEngineering Science and Technology, an International Journal21343945010.1016/j.jestch.2018.03.016Search in Google Scholar

Kaloni, P.N., Lou, J.X. (2004). Convective instability of magnetic fluids. Physical Review E, 70(2), 026313.KaloniP.N.LouJ.X.2004Convective instability of magnetic fluidsPhysical Review E70202631310.1103/PhysRevE.70.02631315447594Search in Google Scholar

Finlayson, B.A. (1970). Convective instability of ferromagnetic fluids. Journal of Fluid Mechanics, 40(4), 753-767.FinlaysonB.A.1970Convective instability of ferromagnetic fluidsJournal of Fluid Mechanics40475376710.1017/S0022112070000423Search in Google Scholar

Rosensweig, R.E. (1997). Ferrohydrodynamics. Dover Publications, INC. Mineola, New York.RosensweigR.E.1997FerrohydrodynamicsDover Publications, INCMineola, New YorkSearch in Google Scholar

Yadav, D., Lee, D., Cho, H.H., Lee, J. (2016). The onset of double-diffusive nanofluid convection in a rotating porous medium layer with thermal conductivity and viscosity variation: a revised model. Journal of Porous media, 19(1), 31-46.YadavD.LeeD.ChoH.H.LeeJ.2016The onset of double-diffusive nanofluid convection in a rotating porous medium layer with thermal conductivity and viscosity variation: a revised modelJournal of Porous media191314610.1615/JPorMedia.v19.i1.30Search in Google Scholar

Awasthi, M.K., Kumar, V., Patel, R.K., (2016). Onset of triply diffusive convection in a maxwell fluid saturated porous layer with internal heat source. Ain Shams Engineering Journal, 9(4), 1591-1600.AwasthiM.K.KumarV.PatelR.K.2016Onset of triply diffusive convection in a maxwell fluid saturated porous layer with internal heat sourceAin Shams Engineering Journal941591160010.1016/j.asej.2016.11.012Search in Google Scholar

Gupta, U., Sharma, J., Sharma, V. (2015). Instability of binary nanofluids with magnetic field. Applied Mathematics and Mechanics, 36(6), 693-706.GuptaU.SharmaJ.SharmaV.2015Instability of binary nanofluids with magnetic fieldApplied Mathematics and Mechanics36669370610.1007/s10483-015-1941-6Search in Google Scholar

eISSN:
2083-831X
Idioma:
Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Geosciences, other, Materials Sciences, Composites, Porous Materials, Physics, Mechanics and Fluid Dynamics