Influence of viscous dissipation and Joule heating on MHD bio-convection flow over a porous wedge in the presence of nanoparticles and gyrotactic microorganisms
Tóm tắt
Từ khóa
Tài liệu tham khảo
Avramenko AA, Kuznetsov AV (2004) Stability of a suspension of gyrotactic microorganisms in superimposed fluid and porous layers. Int Commun Heat Mass Transf 31(8):1057–1066
Choi SUS (1995) Enhancing thermal conductivity of fluids with nanoparticle. In: SiginerDA, Wang HP (eds) Developments and applications of non-newtonian flows, ASME FED, vol 231/MD-vol 66, pp 99–105
Choi SUS, Zhang ZG, Yu W, Lockwood FE, Grulke EA (2001) Anomalously thermal conductivity enhancement in nanotube suspensions. Appl Phys Lett 79:2252–2254
Ellahi R, Hassan M, Zeeshan A (2015) Study on magnetohydrodynamic nanofluid by means of single and multi-walled carbon nanotubes suspended in a salt water solution. IEEE Trans Nanotechnol 14(4):726–734
Falkner VM, Skan SW (1931) Some approximate solutions of the boundary layer equations. Phil Mag 80(12):865–896
Gul A, Khan I, Shafie S, Khalid A, Khan A (2015a) Heat transfer in MHD mixed convection flow of a ferrofluid along a vertical channel. PlOS ONE 11(10):1-142
Gul A, Khan I, Shafie S (2015b) Energy transfer in mixed convection MHD flow of nanofluid containing different shapes of nanoparticles in a channel filled with saturated porous medium. Nanoscale Res Lett 10:490. doi: 10.1186/s11671-015-1144-4
Hartree DR (1937) Onan equation occurring in Falkner and Skan’s approximate treatment of the equations of the boundary layer. Math Proc Camb Philos Soc 33(2):223–239
Khan WA, Makinde OD (2014) MHD nanofluid bioconvection due to gyrotactic microorganisms over a convectively heat stretching sheet. Int J Therm Sci 81:118–124
Khan W, Pop I (2010) Boundary-layer flow of a nanofluid past a stretching sheet. Int J Heat Mass Transf 53(11):2477–2483
Khan WA, Pop I (2013) Boundary layer flow past a wedge moving in a nanofluid. Math Probl Eng 2013:637285. doi: 10.1155/2013/637285
Khan WA, Makinde OD, Khan ZH (2014) MHD boundary layer flow of a nanofluid containing gyrotactic microorganisms past a vertical plate with Navier slip. Int J Heat Mass Transf 74:285–291
Khan U, Ahmed N, Mohyud-Din ST (2015a) Heat transfer effects on carbon nanotubes suspended nanofluid flow in a channel with non-parallel walls under the effect of velocity slip boundary condition: a numerical study. Neural Comput Appl 1–10. doi: 10.1007/s00521-015-2035-4
Khan WA, Culham R, Ul Haq R (2015b) Heat transfer analysis of MHD water functionalized carbon nanotube flow over a static/moving wedge. J Nanomater 2015:934367
Khan U, Ahmed N, Bin-Mohsin B, Mohyud-Din ST (2015c) Nonlinear radiation effects on flow of nanofluid over a porous wedge in the presence of magnetic field. Int J Numer Methods Heat Fluid Flow (In press)
Koh JCY, Hartnett JP (1961) Skin friction and heat transfer for incompressible laminar flow over porous wedges with suction and variable wall temperature. Int J Heat Mass Transf 2(3):185–198
Kuznetsov AV (2010) The onset of nanofluid bioconvection in a suspension containing both nanoparticles and gyrotactic microorganisms. Int Commun Heat Mass Transf 37(10):1421–1425
Makinde OD, Animasaun IL (2016a) Thermophoresis and Brownian motion effects on MHD bioconvection of nanofluid with nonlinear thermal radiation and quartic chemical reaction past an upper horizontal surface of a paraboloid of revolution. J Mol Liq 221:733–743
Makinde OD, Animasaun IL (2016b) Bioconvection in MHD nanofluid flow with nonlinear thermal radiation and quartic autocatalysis chemical reaction past an upper surface of a paraboloid of revolution. Int J Therm Sci 109:159–171
Makinde OD, Aziz A (2011) Boundary layer flow of a nanofluid past a stretching sheet with a convective boundary condition. Int J Therm Sci 50(7):1326–1332
Mohyud-Din ST, Zaidi ZA, Khan U, Ahmed N (2015a) On heat and mass transfer analysis for the flow of a nanofluid between rotating parallel plates. Aerosp Sci Technol 46:514–522
Mohyud-Din ST, Khan U, Ahmed N, Hassan SM (2015b) Magnetohydrodynamic flow and heat transfer of nanofluids in stretchable convergent/divergent channels. Appl Sci 5:1639–1664
Mutuku WN, Makinde OD (2014) Hydromagnetic bioconvection of nanofluid over a permeable vertical plate due to gyrotactic microorganisms. Comput Fluids 95:88–97
Nield DA, Kuznetsov AV (2006) The onset of bio-thermal convection in a suspension of gyrotactic microorganisms in a fluid layer: oscillatory convection. Int J Therm Sci 45(10):990–997
Sheikholeslami M, Ellahi R (2015a) Electrohydrodynamic nanofluid hydrothermal treatment in an enclosure with sinusoidal upper wall. Appl Sci 5(3):294–306
Sheikholeslami M, Ellahi R (2015b) Three dimensional mesoscopic simulation of magnetic field effect on natural convection of nanofluid. Int J Heat Mass Transf 89:799–808