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International Journal of Heat and Mass Transfer, ISSN 0017-9310, 09/2013, Volume 64, pp. 1239 - 1256
This second part of a two-part study examines the prediction of saturated flow boiling heat transfer in mini/micro-channels. The first part culminated in a... 
Mini-channel | Flow boiling | Heat transfer coefficient | Micro-channel | Dryout incipience | HORIZONTAL TUBE | CO2 | GENERAL CORRELATION | WATER-FLOW | ENGINEERING, MECHANICAL | DIAMETER | MECHANICS | FRICTIONAL PRESSURE-DROP | SINGLE-PHASE | THERMODYNAMICS | FLUX CHF | JET | R134A | Boiling
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 10/2015, Volume 89, pp. 433 - 443
•Stability of designed ZnO/(EG+W) nanofluids was analysed by DLS technique.•Among studied nanofluids, 1wt.% ZnO/(EG+W) exhibits the highest Mouromtseff... 
Water | Ethylene glycol | Nanofluid | Thermal conductivity | ZnO | Dynamic viscosity | Heat transfer coefficient | TUBE | TRANSFER ENHANCEMENT | THERMOPHYSICAL PROPERTIES | VISCOSITY | THERMAL-CONDUCTIVITY | LAMINAR MIXED CONVECTION | FLOW | ENGINEERING, MECHANICAL | PRESSURE-DROP | NANOPARTICLES | MECHANICS | ETHYLENE-GLYCOL | THERMODYNAMICS
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 11/2016, Volume 155, pp. 38 - 44
Microreactors offer a unique platform for chemical syntheses and have been applied to numerous reaction types including nitrations, fluorinations and... 
Microreactor | CO2 absorption | Inclined plate | Mass transfer | absorption | ENGINEERING, CHEMICAL | CHANNEL | HYDRODYNAMICS | FLOW | Chemical synthesis
Journal Article
1993, 3rd ed., ISBN 9780139304392, xii, 921
Book
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 07/2016, Volume 98, pp. 868 - 878
•Experimental data of Part I is compared to recent predictive correlations.•Metal foam filled tube and empty tube dataset is considered.•Empty tube dataset has... 
Flow boiling | Heat transfer | Metal foam | Predictive method | Database industry | Methods | Mechanical engineering | Analysis | Correlation | Mini | Pressure drop | Tubes | Boiling | Heat transfer coefficients | Channels
Journal Article
Heat and Mass Transfer, ISSN 0947-7411, 8/2018, Volume 54, Issue 8, pp. 2395 - 2403
The energy balance and heat exchange for newborn baby in radiant warmer environment are considered. The present study was performed to assess the body dry heat... 
Engineering | Thermodynamics | Newborn baby | Radiant warmer | Engineering Thermodynamics, Heat and Mass Transfer | Nu correlation | Natural convection | Industrial Chemistry/Chemical Engineering | Heat transfer coefficient | Infants (Newborn) | Biomedical engineering
Journal Article
International Journal of Heat and Fluid Flow, ISSN 0142-727X, 2008, Volume 29, Issue 1, pp. 315 - 326
A computer tomography based methodology is applied to determine the transport properties of fluid flow across porous media. A 3D digital representation of a... 
Porous media | Dupuit–Forchheimer | Tomography | Numerical simulation | Permeability | Heat transfer coefficient | Pore-level | Dupuit-Forchheimer | FOAMS | FLUID PERMEABILITY | FIELD | permeability | SECTIONS | FLOW | ENGINEERING, MECHANICAL | MECHANICS | THERMODYNAMICS | CYLINDERS | tomography | heat transfer coefficient | IMAGE-ANALYSIS | MEDIA | porous media | pore-level | numerical simulation
Journal Article
Applied Energy, ISSN 0306-2619, 2011, Volume 88, Issue 12, pp. 4358 - 4365
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 12/2017, Volume 115, p. 657
In this work, the microscopic and macroscopic models of the porous composite system are established to study the stress jump coefficient, the interstitial heat... 
Stresses | Boundary conditions | Bifurcations | Macroscopic models | Free boundaries | Heat flux | Porous media | Thickness | Laminar flow | Biot number | Couette flow | Porosity | Heat transfer coefficients | Heat transfer
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 12/2017, Volume 115, pp. 657 - 662
•Heat flux bifurcation phenomenon is demonstrated by using the microscopic model.•A method for calculating the interstitial heat transfer coefficient is... 
Local thermal non-equilibrium | Fluid-porous interface condition | Porous composite system | Heat flux bifurcation | MECHANICS | THERMODYNAMICS | MOMENTUM-TRANSFER | FLUID-FLOW | MEDIA | BOUNDARY | BIFURCATION | ENGINEERING, MECHANICAL
Journal Article