Natural convective heat transfer and nanofluid flow in a cavity with top wavy wall and corner heater
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ÖZTOP H. F., ESTELLÉ P. and YAN W. M. et al. A brief review of natural convection in enclosures under localized heating with and without nanofluids[J]. International Communications in Heat and Mass Transfer, 2015, 60: 37–44.
RAY S., CHATTERJEE D. MHD mixed convection in a lid-driven cavity including heat conducting circular solid object and corner heaters with Joule heating[J]. International Communications in Heat and Mass Transfer, 2014, 57: 200–207.
AHMED S. E., ÖZTOP H. F. and AL-SALEM K. Natural convection coupled with radiation heat transfer in an inclined porous cavity with corner heater[J]. Computers and Fluids, 2014, 102: 74–84.
ÖZTOP H. F., AL-SALEM K. and POP I. MHD mixed convection in a lid-driven cavity with corner heater[J]. International Journal of Heat and Mass Transfer, 2011, 54(15–16): 3494–3504.
ABU-NADA E. Dissipative particle dynamics simulation of combined convection in a vertical lid driven cavity with a corner heater[J]. International Journal of Thermal Sciences, 2015, 92: 72–84.
MALVANDI A., GANJI D. D. Effects of nanoparticle migration and asymmetric heating on magnetohydrodynamic forced convection of alumina/water nanofluid in microchannels[J]. European Journal of Mechanics-B/Fluids, 2015, 52: 169–184.
MALVANDI A. Film boiling of magnetic nanofluids (MNFs) over a vertical plate in presence of a uniform variable-directional magnetic field[J]. Journal of Magnetism and Magnetic Materials, 2016, 406: 95–102.
MALVANDI A., MOSHIZI S. A. and GANJI D. D. Two-component heterogeneous mixed convection of alumina/water nanofluid in microchannels with heat source/sink[J]. Advanced Powder Technology, 2016, 27(1): 245–254.
MALVANDI A., GANJI D. D. and KAFFASH M. H. Magnetic field effects on nanoparticle migration and heat transfer of alumina/water nanofluid in a parallel-plate channel with asymmetric heating[J]. European Physical Journal Plus, 2015, 130(4): 1–21.
MALVANDI A., HEYSIATTALAB S. and GANJI D. D. Thermophoresis and Brownian motion effects on heat transfer enhancement at film boiling of nanofluids over a vertical cylinder[J]. Journal of Molecular Liquids, 2016, 216: 503–509.
ÖZTOP H. F., ABU-NADA E. and VAROL Y. et al. Natural convection in wavy enclosure with volumetric heat sources[J]. International Journal of Thermal Sciences, 2011, 50(4): 502–514.
VAROL Y., ÖZTOP H. F. A comparative numerical study on natural convection in inclined wavy and flat-plate solar collectors[J]. Building and Environment, 2008, 43(9): 1535–1544.
SHEREMET M. A., POP I. and SHENOY A. Unsteady free convection in a porous open wavy cavity filled with a nanofluid using Buongiorno’s mathematical model[J]. International Communications in Heat and Mass Transfer, 2015, 67: 66–72.
NIKFAR M., MAHMOODI M. Meshless local Petrov-Galerkin analysis of free convection of nanofluid in a cavity with wavy side walls[J]. Engineering Analysis with Boundary Elements, 2012, 36(3): 433–445.
CHO C. C., CHEN C. L. and CHEN C. K. Natural convection heat transfer performance in complex- wavy wall enclosed cavity filled with nanofluid[J]. International Journal of Thermal Sciences, 2012, 60(1): 255–263.
ADJLOUT L., IMINE O. and AZZI A. et al. Laminar natural convection in an inclined cavity with a wavy wall[J]. International Journal of Heat and Mass Transfer, 2002, 45(10): 2141–2152.
DAS P. K., MAHMUD S. Numerical investigation of natural convection inside a wavy enclosure[J]. International Journal of Thermal Sciences, 2003, 42(4): 397–406.
SHENOY A., SHEREMET M. and POP I. Convective flow and heat transfer from vawy surfaces: Viscous fluids, porous media and nanofluids[M]. New York, USA: CRC Press, Taylor and Francis Group, 2016.
SHEREMET M. A., ÖZTOP H. F. and POP I. et al. Analysis of entropy generation in natural convection of nano-fluid inside a square cavity having hot solid block: Tiwari and Das’ model[J]. Entropy, 2015, 18: doi:10.3390/e18010009.
SHEREMET M. A., GROSAN T. and POP I. Free convection in a square cavity filled with a porous medium satu-rated by nanofluid using Tiwari and Das’ nanofluid model[J]. Transport in Porous Media, 2015, 106(3): 595–610.
BRINKMAN H. C. The viscosity of concentrated suspensions and solution[J]. Journal of Chemical Physics, 1952, 20(4): 571–571.
MAXWELL J. C. A treatise on electricity and magnetism[M]. 2nd Edition, Cambridge, UK: Oxford University Press, 1904.