In this study, experimental and theoretical investigations are performed to identify the thermohydrodynamic characteristics of a micro pulsating heat pipe (MPHP). Specifically, the relationship between the heat input and the vapor distribution observed in the MPHP is revealed. A silicon-based MPHP with five turns and a hydraulic diameter of 667 m is fabricated using MEMS techniques. Experiments are performed, using ethanol as a working fluid at a filling ratio of 55%, in a vertical orientation with a bottom-heating mode. Flow visualization is conducted together with a temperature measurement. In the MPHP, two menisci located at both ends of each vapor plug are observed to be asymmetrically distributed: the position of one meniscus (up-heade...
Increasing interest in the use of plastic foils for flexible electronic applications calls for a mor...
The present industry demand of high heat transfer capability, coupled with relatively cheap and incr...
Heat pipes are a popular choice for many industries and research applications to extract heat effect...
In this study, experimental and theoretical investigations are performed to reveal a relationship be...
Theoretical and experimental analyses are performed for oscillating flow in a micro pulsating heat p...
As technology becomes increasingly miniaturized, extremely localized heat dissipation leads to the c...
Increasing performance of electronic components is resulting in higher heat flux dissipation. Two-ph...
Two Si-based micro pulsating heat pipes (µPHPs) charged using HFE-7100 were either horizontally or v...
The purpose of this study is to experimentally examine the oscillation frequencies of liquid slugs i...
Heat exchanger optimization is mandatory in almost any industrial application. Thanks to their perfo...
The thermal behavior of Pulsating Heat Pipes (PHPs), which is inherently time-dependent, could also ...
Thermal management of electronics semiconductor technology is elixir to transform dream and imaginat...
The specific heat capacity of working fluid is an important influence factor on heat transfer charac...
Due to the rapid advances in miniaturization of electronic components, micro heat pipe manifests its...
Every area of engineering is advancing, which is driving up demand for more compact and efficient he...
Increasing interest in the use of plastic foils for flexible electronic applications calls for a mor...
The present industry demand of high heat transfer capability, coupled with relatively cheap and incr...
Heat pipes are a popular choice for many industries and research applications to extract heat effect...
In this study, experimental and theoretical investigations are performed to reveal a relationship be...
Theoretical and experimental analyses are performed for oscillating flow in a micro pulsating heat p...
As technology becomes increasingly miniaturized, extremely localized heat dissipation leads to the c...
Increasing performance of electronic components is resulting in higher heat flux dissipation. Two-ph...
Two Si-based micro pulsating heat pipes (µPHPs) charged using HFE-7100 were either horizontally or v...
The purpose of this study is to experimentally examine the oscillation frequencies of liquid slugs i...
Heat exchanger optimization is mandatory in almost any industrial application. Thanks to their perfo...
The thermal behavior of Pulsating Heat Pipes (PHPs), which is inherently time-dependent, could also ...
Thermal management of electronics semiconductor technology is elixir to transform dream and imaginat...
The specific heat capacity of working fluid is an important influence factor on heat transfer charac...
Due to the rapid advances in miniaturization of electronic components, micro heat pipe manifests its...
Every area of engineering is advancing, which is driving up demand for more compact and efficient he...
Increasing interest in the use of plastic foils for flexible electronic applications calls for a mor...
The present industry demand of high heat transfer capability, coupled with relatively cheap and incr...
Heat pipes are a popular choice for many industries and research applications to extract heat effect...