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SAE technical paper series, Volume 910196.
Experiments were performed to determine the physical mechanisms for the local heat transfer enhancement caused by short fins of square planform cross section,... 
Engine cooling systems | Heat exchangers
eJournal
SAE technical paper series, Volume 920547.
An experimental investigation was conducted to determine the influence of fin aspect ratio on the heat transfer enhancement in narrow, rectangular ducts.... 
Engine cooling systems
eJournal
Langmuir, ISSN 0743-7463, 04/2009, Volume 25, Issue 8, pp. 4815 - 4820
Journal Article
Physical Review Letters, ISSN 0031-9007, 04/2018, Volume 120, Issue 17, p. 174501
A variety of industrial applications such as power generation, water distillation, and high-density cooling rely on heat transfer processes involving boiling.... 
Distillation | Wetting | Vapors | Distilled water | Industrial applications | Hydrophobicity | Texture | Heat flux | Interstices | Energy dissipation | Nucleate boiling | Film boiling | Hydrophobic surfaces | Surface layers | Heat transfer | Energy conversion efficiency
Journal Article
Applied Physics Letters, ISSN 0003-6951, 08/2018, Volume 113, Issue 8
We identify the formation of an unstable rim at the three-phase contact line of an evaporating methanol meniscus due to the autophobic nature of the liquid.... 
Stability | Methyl alcohol | Slip | Silicon substrates | Droplets | Drying
Journal Article
Applied Thermal Engineering, ISSN 1359-4311, 07/2016, Volume 104, pp. 720 - 733
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 10/2019, Volume 142, p. 118407
Confined and submerged two-phase jet impingement is a compact, low-pressure-drop solution for high heat flux dissipation from electronic components. Nucleate... 
Flow visualization | Nucleate boiling | Electronics cooling | Jet impingement | Critical heat flux | Two-phase flow
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 04/2018, Volume 119, p. 867
Advances in the computational performance of electronic devices have created a clear need for improved methods of passive thermal management. This has led to... 
Electronic devices | Phase transformations | Vapors | Performance prediction | Finite volume method | Spreaders | Pressure | Transient performance | Differential equations | Ordinary differential equations | Thermal management | Computational efficiency | Transport | Cost analysis | Energy management | Three dimensional models | Heat transfer | Mobile computing | Chambers
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 03/2017, Volume 106, p. 1251
Electrode design is investigated for electrical capacitance tomography on a 1 mm-thick 3D planar domain. Arrays of square electrodes are located on both sides... 
Electrodes | Finite element method | Sensitivity | Computer simulation | Tomography | Capacitance | Dielectrics | Conditioning | Composing | Substrates | Image reconstruction | Anomalies
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 01/2019, Volume 128, p. 1095
Thermal management of high-power electronics requires cooling strategies capable of dissipating high heat fluxes while maintaining the device at low operating... 
Cooling | Electronics | Identification | High temperature | Experiments | Heat flux | Hot surfaces | Jet impingement | Energy dissipation | Pressure drop | Impingement | Orifices | Low pressure | Dependence | Working fluids | Thermal management | Nucleate boiling | Configurations | Heat transfer coefficients | Heat transfer | Operating temperature | Orifice meters
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 12/2017, Volume 115, p. 1137
An experimental investigation is conducted to examine the effects of operating conditions and channel size on the liquid film thickness of vapor bubbles in... 
Data points | Error analysis | Fluorescence | Water flow | Film thickness | Errors | Bubbles | Adiabatic flow | Gas flow | Predictions | Mathematical models | Slug flow | Cross sections | Heat transfer
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 09/2018, Volume 124, p. 769
Evaporating flows in parallel channels occurring in a variety of industrial heat exchange processes can encounter non-uniform flow distribution between... 
Nonuniform flow | Two phase flow | Computer simulation | Temperature gradients | Evaporation | Heat flux | Microchannels | Resistance | Wall temperature | Heat exchange | Flow distribution | Flow velocity | Modelling | Uniform flow | Thermal coupling | Heat transfer
Journal Article
Applied Physics Letters, ISSN 0003-6951, 01/2017, Volume 110, Issue 4
High-fidelity experimental characterization of sessile droplet evaporation is required to understand the interdependent physical mechanisms that drive the... 
Temperature distribution | Latent heat | Temperature | Diffusion rate | Water drops | Evaporative cooling | Evaporation | Contact angle | Mass transfer | Substrates | Evaporation rate | Temperature measurement | Infrared imaging | Mathematical models | Droplets | Thermography
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 03/2017, Volume 106, p. 648
The behavior of a vapor chamber is strongly coupled to the thermophysical properties of the working fluid within. It is well known that these properties limit... 
Computational fluid dynamics | Temperature gradients | Fluid | Fluid flow | Heat conductivity | Physical properties | Properties (attributes) | Thermal resistance | Vapor resistance | Pressure drop | Energy dissipation | Working fluids | Capillary pressure | Maximum power | Pipes | Thermophysical properties | Heat transfer | Figure of merit | Chambers
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 11/2017, Volume 114, p. 841
A methodology is proposed for predictive modeling of the liquid-gas interface shape and saturated flow boiling heat transfer coefficient in two-phase... 
Gravitation | Void fraction | Shear stresses | Annular flow | Microchannels | Studies | Interfaces | Thickness | Adiabatic flow | Weber number | Predictions | Shear stress | Modelling | Surface tension | Mathematical models | Heat transfer coefficients | Curvature | Cross sections | Heat transfer
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 09/2018, Volume 124, p. 782
Two-phase jet impingement is a compact cooling technology that provides high-heat-flux dissipation at manageable pressure drop, with applications in cooling... 
Cooling | Phase transformations | Temperature gradients | Pressure | Empirical analysis | Boiling | Heat flux | Unit cell | Jet impingement | Energy dissipation | Pressure drop | Impingement | Orifices | Predictions | Modelling | Mathematical models | Comparative analysis | Arrays | Heat transfer coefficients | Heat transfer
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 03/2017, Volume 106, pp. 1251 - 1260
Electrode design is investigated for electrical capacitance tomography on a 1 mm-thick 3D planar domain. Arrays of square electrodes are located on both sides... 
Optimized design | 3D capacitance tomography | Image reconstruction | Electrode design | MECHANICS | THERMODYNAMICS | IMAGE-RECONSTRUCTION | RECONSTRUCTION ALGORITHM | ENGINEERING, MECHANICAL | Tomography | Dielectrics | Electric fields | Analysis | Electric properties
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 04/2017, Volume 107, p. 557
Two-phase heat exchangers are used in a variety of industrial processes in which the boiling fluid flows through a network of parallel channels. In some... 
Inlet temperature | Stability analysis | Heat exchangers | Impact tests | Channels | Heat flux | Flow stability | Flow equations | Pressure drop | Flow distribution | Flow velocity | Mathematical models | Uniform flow | Heat transfer
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 03/2017, Volume 106, p. 619
This study uses high-speed imaging to characterize microchannel slug flow boiling using a novel experimental test facility that generates an archetypal flow... 
Fluid mechanics | Indium tin oxide | Liquid phases | Slugs | Film thickness | Transfer facilities | Heat flux | Ohmic dissipation | Bubbles | Electrical resistivity | High speed | Flow visualization | Borosilicate glasses | Fluorination | Slug flow | Heat transfer
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 12/2017, Volume 115, p. 619
Structured porous materials show great potential as extended surfaces in heat-exchange applications that also require design for load-bearing capability. In... 
Metal foams | Structural integrity | Computer simulation | Computational fluid dynamics | Porous materials | Reynolds number | Fluid flow | Fins | Friction factor | Aerodynamics | Heat exchangers | Convection | Foamed metals | Strength to weight ratio | Heat exchange | Porosity | Thermodynamic properties | Performance measurement | Ligaments | Heat transfer | Cross flow
Journal Article
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