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Dr. Rehena Nasrin
Dr. Rehena Nasrin
Professor, Dept. of Mathematics, Bangladesh University of Engineering & Technology
Verified email at math.buet.ac.bd - Homepage
Title
Cited by
Cited by
Year
Water/MWCNT nanofluid based cooling system of PVT: Experimental and numerical research
R Nasrin, NA Rahim, H Fayaz, M Hasanuzzaman
Renewable energy 121, 286-300, 2018
2262018
Heat transfer and entropy generation through nanofluid filled direct absorption solar collector
S Parvin, R Nasrin, MA Alim
International Journal of Heat and Mass Transfer 71, 386-395, 2014
1932014
Energy and exergy analysis of the PVT system: Effect of nanofluid flow rate
H Fayaz, R Nasrin, NA Rahim, M Hasanuzzaman
Solar Energy 169, 217-230, 2018
1782018
Numerical and experimental investigation of the effect of operating conditions on performance of PVT and PVT-PCM
H Fayaz, NA Rahim, M Hasanuzzaman, R Nasrin, A Rivai
Renewable Energy 143, 827-841, 2019
1612019
Numerical and outdoor real time experimental investigation of performance of PCM based PVT system
H Fayaz, NA Rahim, M Hasanuzzaman, A Rivai, R Nasrin
Solar Energy 179, 135-150, 2019
1542019
Thermal conductivity variation on natural convection flow of water–alumina nanofluid in an annulus
S Parvin, R Nasrin, MA Alim, NF Hossain, AJ Chamkha
International Journal of Heat and Mass Transfer 55 (19-20), 5268-5274, 2012
1432012
Combined convection flow in triangular wavy chamber filled with water–CuO nanofluid: effect of viscosity models
R Nasrin, MA Alim, AJ Chamkha
International Communications in Heat and Mass Transfer 39 (8), 1226-1236, 2012
1102012
Investigation of buoyancy-driven flow and heat transfer in a trapezoidal cavity filled with water–Cu nanofluid
R Nasrin, S Parvin
International Communications in Heat and Mass Transfer 39 (2), 270-274, 2012
1042012
Effect of high irradiation and cooling on power, energy and performance of a PVT system
R Nasrin, M Hasanuzzaman, NA Rahim
Renewable energy 116, 552-569, 2018
982018
Effect of high irradiation on photovoltaic power and energy
R Nasrin, M Hasanuzzaman, NA Rahim
International Journal of Energy Research 42 (3), 1115-1131, 2018
812018
Hydromagnetic effect on mixed convection in a lid-driven cavity with sinusoidal corrugated bottom surface
R Nasrin, S Parvin
International Communications in Heat and Mass Transfer 38 (6), 781-789, 2011
802011
Buoyancy-driven heat transfer of water–Al2O3 nanofluid in a closed chamber: Effects of solid volume fraction, Prandtl number and aspect ratio
R Nasrin, MA Alim, AJ Chamkha
International Journal of Heat and Mass Transfer 55 (25-26), 7355-7365, 2012
712012
Finite element simulation of forced convection in a flat plate solar collector: influence of nanofluid with double nanoparticles
R Nasrin, MA Alim
Journal of Applied Fluid Mechanics 7 (3), 543-556, 2014
682014
Effects of physical parameters on natural convection in a solar collector filled with nanofluid
R Nasrin, MA Alim, AJ Chamkha
Heat Transfer—Asian Research 42 (1), 73-88, 2013
672013
Effect of nanofluids on heat transfer and cooling system of the photovoltaic/thermal performance
R Nasrin, M Hasanuzzaman, NA Rahim
International Journal of Numerical Methods for Heat & Fluid Flow 29 (6 …, 2019
582019
Modeling of mixed convective heat transfer utilizing nanofluid in a double lid-driven chamber with internal heat generation
R Nasrin, MA Alim, AJ Chamkha
International Journal of Numerical Methods for Heat & Fluid Flow 24 (1), 36-57, 2014
542014
Semi-empirical relation for forced convective analysis through a solar collector
R Nasrin, MA Alim
Solar Energy 105, 455-467, 2014
532014
Analysis of the flow and heat transfer characteristics for MHD free convection in an enclosure with a heated obstacle
S Parvin, R Nasrin
Nonlinear Analysis: Modelling and Control 16 (1), 89-99, 2011
522011
Double‐diffusive natural convection in a partially heated enclosure using a nanofluid
S Parvin, R Nasrin, MA Alim, NF Hossain
Heat Transfer—Asian Research 41 (6), 484-497, 2012
492012
Thermal performance of nanofluid filled solar flat plate collector
R Nasrin, MA Alim
International Journal of Heat and Technology 33 (2), 17-24, 2015
482015
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