Flow boiling in microchannel heat sinks has been researched extensively for its use in the cooling of high-power electronics. Previous works have proven open microchannels with tapered gap manifolds are effective in delivering enhanced flow boiling performance, with significant reductions in pressure drop. This work explores the feasibility of employing ethanol as a dielectric fluid in an open microchannel geometry with tapered manifolds, under a gravity-driven flow. A heat flux of 217 ± 13 W/cm2 was dissipated with a pressure drop of only 8.8 ± 0.5 kPa. Parametric trends are presented regarding flow rate, taper, pressure drop characteristics, and their effect on critical heat flux, providing basic insight into designing high heat flux syst...
Microchannels show promising potential for implementation in next generation high heat flux cooling ...
The dawn of a new Space Age is upon us; Microgravity combustion of hydrocarbon fuels is a popular me...
Due to the length scales in microfluidic systems interfacial forces dominate over inertia and gravit...
Flow boiling in microchannel heat sinks has been researched extensively for its use in the cooling o...
Open Microchannel Manifold (OMM) with taper has proved instrumental in enhancing heat transfer perfo...
High performance condensers are an essential component in many energy conversion, electronics and pr...
Boiling can provide several orders of magnitude higher performance than a traditional air cooled sys...
This study is the first to document the condensation heat transfer performance of small diameter, m...
Microchannel tubing is a relatively new heat-exchanger technology which involves internal heat tran...
Embedded cooling—an emerging thermal management paradigm for electronic devices—has motivated furthe...
Increasing integration density of electronic components has exacerbated the thermal management chall...
The micro–channel research literature presents a clear need to provide accurate models that can pred...
Measurements of pressure drop and heat transfer coefficient were taken for smooth and internally enh...
Experiments were conducted to investigate flow boiling heat transfer to a dielectric fluid in a sili...
The transition from single-phase to two-phase thermal systems in future space vehicles demands a tho...
Microchannels show promising potential for implementation in next generation high heat flux cooling ...
The dawn of a new Space Age is upon us; Microgravity combustion of hydrocarbon fuels is a popular me...
Due to the length scales in microfluidic systems interfacial forces dominate over inertia and gravit...
Flow boiling in microchannel heat sinks has been researched extensively for its use in the cooling o...
Open Microchannel Manifold (OMM) with taper has proved instrumental in enhancing heat transfer perfo...
High performance condensers are an essential component in many energy conversion, electronics and pr...
Boiling can provide several orders of magnitude higher performance than a traditional air cooled sys...
This study is the first to document the condensation heat transfer performance of small diameter, m...
Microchannel tubing is a relatively new heat-exchanger technology which involves internal heat tran...
Embedded cooling—an emerging thermal management paradigm for electronic devices—has motivated furthe...
Increasing integration density of electronic components has exacerbated the thermal management chall...
The micro–channel research literature presents a clear need to provide accurate models that can pred...
Measurements of pressure drop and heat transfer coefficient were taken for smooth and internally enh...
Experiments were conducted to investigate flow boiling heat transfer to a dielectric fluid in a sili...
The transition from single-phase to two-phase thermal systems in future space vehicles demands a tho...
Microchannels show promising potential for implementation in next generation high heat flux cooling ...
The dawn of a new Space Age is upon us; Microgravity combustion of hydrocarbon fuels is a popular me...
Due to the length scales in microfluidic systems interfacial forces dominate over inertia and gravit...