An Experimental Investigation of Micro Pulsating Heat Pipes
Two Si-based micro pulsating heat pipes (µPHPs) charged using HFE-7100 were either horizontally or vertically oriented and were tested using several heating powers. The width of each channel was 0.8 mm in one µPHP containing uniform channels, and the channel width was 1.0 mm or 0.6 mm in the other µ...
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doaj-74d0f106ac6840d1a23765d1591ade732020-11-24T22:58:21ZengMDPI AGMicromachines2072-666X2014-06-015238539510.3390/mi5020385mi5020385An Experimental Investigation of Micro Pulsating Heat PipesKai-Shing Yang0Yu-Chi Cheng1Ming-Shan Jeng2Kuo-Hsiang Chien3Jin-Cherng Shyu4Green Energy and Environment Research Lab., Industrial Technology Research Institute, Hsinchu 31040, TaiwanDepartment of Mechanical Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung 80778, TaiwanGreen Energy and Environment Research Lab., Industrial Technology Research Institute, Hsinchu 31040, TaiwanGreen Energy and Environment Research Lab., Industrial Technology Research Institute, Hsinchu 31040, TaiwanDepartment of Mechanical Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung 80778, TaiwanTwo Si-based micro pulsating heat pipes (µPHPs) charged using HFE-7100 were either horizontally or vertically oriented and were tested using several heating powers. The width of each channel was 0.8 mm in one µPHP containing uniform channels, and the channel width was 1.0 mm or 0.6 mm in the other µPHP, which did not contain uniform channels. The depth of each channel was 0.25 mm. The overall size of each µPHP was 60 × 10 × 1.25 mm. Visual observation and temperature measurement of the µPHPs under various conditions were performed and the results were analyzed. The results indicated that when the µPHPs were operated horizontally at a heating power ranging from 1 to 7 W, the pulsating two-phase flow in the channels of the µPHPs could not begin, except when the µPHP containing nonuniform channels was tested at a heating power of 7 W. With a heating power less than 5 W, the frequency of the sine-like oscillating displacement of the vapor slug increased and the displacement of the vapor slug reduced in either vertically oriented μPHP, as the heating power increased With a heating power higher than 5 W, periodic “start-stop” behaviors were observed in the vertical μPHP containing nonuniform channels.http://www.mdpi.com/2072-666X/5/2/385Si-basedpulsating heat pipeorientationHFE-7100 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kai-Shing Yang Yu-Chi Cheng Ming-Shan Jeng Kuo-Hsiang Chien Jin-Cherng Shyu |
spellingShingle |
Kai-Shing Yang Yu-Chi Cheng Ming-Shan Jeng Kuo-Hsiang Chien Jin-Cherng Shyu An Experimental Investigation of Micro Pulsating Heat Pipes Micromachines Si-based pulsating heat pipe orientation HFE-7100 |
author_facet |
Kai-Shing Yang Yu-Chi Cheng Ming-Shan Jeng Kuo-Hsiang Chien Jin-Cherng Shyu |
author_sort |
Kai-Shing Yang |
title |
An Experimental Investigation of Micro Pulsating Heat Pipes |
title_short |
An Experimental Investigation of Micro Pulsating Heat Pipes |
title_full |
An Experimental Investigation of Micro Pulsating Heat Pipes |
title_fullStr |
An Experimental Investigation of Micro Pulsating Heat Pipes |
title_full_unstemmed |
An Experimental Investigation of Micro Pulsating Heat Pipes |
title_sort |
experimental investigation of micro pulsating heat pipes |
publisher |
MDPI AG |
series |
Micromachines |
issn |
2072-666X |
publishDate |
2014-06-01 |
description |
Two Si-based micro pulsating heat pipes (µPHPs) charged using HFE-7100 were either horizontally or vertically oriented and were tested using several heating powers. The width of each channel was 0.8 mm in one µPHP containing uniform channels, and the channel width was 1.0 mm or 0.6 mm in the other µPHP, which did not contain uniform channels. The depth of each channel was 0.25 mm. The overall size of each µPHP was 60 × 10 × 1.25 mm. Visual observation and temperature measurement of the µPHPs under various conditions were performed and the results were analyzed. The results indicated that when the µPHPs were operated horizontally at a heating power ranging from 1 to 7 W, the pulsating two-phase flow in the channels of the µPHPs could not begin, except when the µPHP containing nonuniform channels was tested at a heating power of 7 W. With a heating power less than 5 W, the frequency of the sine-like oscillating displacement of the vapor slug increased and the displacement of the vapor slug reduced in either vertically oriented μPHP, as the heating power increased With a heating power higher than 5 W, periodic “start-stop” behaviors were observed in the vertical μPHP containing nonuniform channels. |
topic |
Si-based pulsating heat pipe orientation HFE-7100 |
url |
http://www.mdpi.com/2072-666X/5/2/385 |
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