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International Journal of Heat and Mass Transfer, ISSN 0017-9310, 2011, Volume 54, Issue 19, pp. 4410 - 4428
Journal Article
Renewable Energy, ISSN 0960-1481, 08/2018, Volume 123, pp. 398 - 406
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 02/2017, Volume 105, pp. 811 - 825
•A sensitivity analysis is presented on the combined natural convection and surface radiation heat transfer.•An inclined porous solar cavity receiver is... 
Solar cavity receiver | Combined heat transfer | Sensitivity analysis | Response surface methodology | Porous medium | PERISTALTIC FLOW | FLUID-FLOW | PLATE FINS | ENGINEERING, MECHANICAL | PRESSURE-DROP | NANOFLUID | ENTROPY GENERATION | MECHANICS | THERMODYNAMICS | LAMINAR NATURAL-CONVECTION | 2-PHASE SIMULATION | ENCLOSURES | THERMAL-RADIATION
Journal Article
Lancet Neurology, The, ISSN 1474-4422, 2017, Volume 16, Issue 5, pp. 351 - 359
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 2010, Volume 53, Issue 19, pp. 4316 - 4325
The phenomenon of temperature gradient bifurcation in a porous medium is analyzed by studying the convective heat transfer process within a channel filled with... 
Porous media | Convective heat transfer | Local thermal non-equilibrium | Internal heat generation | MECHANICS | THERMODYNAMICS | NON-DARCIAN | BOUNDARY-CONDITIONS | DIFFERENTIALS | ENGINEERING, MECHANICAL | Mechanical engineering | Fluids | Computational fluid dynamics | Mathematical analysis | Fluid flow | Bifurcations | Mathematical models | Walls | Temperature gradient
Journal Article
Science, ISSN 0036-8075, 12/2013, Volume 342, Issue 6165, pp. 1453 - 1454
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 2011, Volume 54, Issue 25, pp. 5286 - 5297
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 2003, Volume 46, Issue 19, pp. 3639 - 3653
Heat transfer enhancement in a two-dimensional enclosure utilizing nanofluids is investigated for various pertinent parameters. A model is developed to analyze... 
NATURAL-CONVECTION | MECHANICS | THERMODYNAMICS | SUSPENSIONS | THERMAL-CONDUCTIVITY | FLOW | ENGINEERING, MECHANICAL
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 01/2019, Volume 135, Issue 2, pp. 1479 - 1492
This investigation provides a review on the applications of nanofluids in porous media. The transport phenomena in porous media have been of continuing... 
MHD | Nanofluid | Natural and mixed convection | Porous medium | Laminar | NATURAL-CONVECTION | CHEMISTRY, ANALYTICAL | HEAT-TRANSFER ENHANCEMENT | FLUID-FLOW | CAVITY | CHEMISTRY, PHYSICAL | ENCLOSURE | EFFECTIVE THERMAL-CONDUCTIVITY | MIXED CONVECTION | TRANSPORT | THERMODYNAMICS | BOUNDARY | MASS-TRANSFER
Journal Article
by Ai, L and Vafai, K
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 2006, Volume 49, Issue 9, pp. 1568 - 1591
A mathematical model is developed for the coupled analysis of the transport of macromolecules, such as low-density lipoproteins (LDL), in the blood stream and... 
HEAT-TRANSFER | FIBER-MATRIX MODEL | FLOW | ENGINEERING, MECHANICAL | PRESSURE | MECHANICS | THERMODYNAMICS | HYDRAULIC CONDUCTIVITY | POROUS-MEDIA | OPTIMIZATION | DIFFUSION | VARIABLE POROSITY | VARYING ALBUMIN CONCENTRATION | Hypertension | Models | Blood lipids | Mechanical engineering | Analysis | Low density lipoproteins
Journal Article
Mathematical and Computer Modelling, ISSN 0895-7177, 04/2012, Volume 55, Issue 7-8, pp. 1876 - 1891
Heat transfer plays an important role in the handling and processing of non-Newtonian nanofluids. In this paper, the fully developed flow of an incompressible,... 
Variable viscosity | Non-Newtonian nanofluid | Porosity effects | Analytical solutions | Heat transfer analysis | Nonlinear coupled equations | Reynolds' model | Vogel's model | Convergence | MATHEMATICS, APPLIED | 3RD GRADE FLUID | FLOW | COAXIAL CYLINDERS | POROUS-MEDIUM | Nanotechnology | Methods
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 01/2017, Volume 104, pp. 328 - 336
•A comprehensive analysis of the thermal conductivity of graphene under various conditions is presented in this study.•Results obtained from different... 
Nanoscale | Graphene | Thermal conductivity | MOLECULAR-DYNAMICS | HEAT PIPES | PERFORMANCE | STARTUP CHARACTERISTICS | FLOW | ENGINEERING, MECHANICAL | VAPOR | MECHANICS | THERMODYNAMICS | CONDUCTIVITY | NANORIBBONS | NON-DARCIAN TRANSPORT | ASYMMETRICAL FLAT-PLATE | Thermal properties | Analysis | Graphite | Electric properties
Journal Article