Numerical Analysis of Piezoelectric Micro Pump
碩士 === 國立臺灣大學 === 機械工程學研究所 === 95 === A micro-fluid system usually involves Micro Channel、Micro Valve、Micro Sensor and Micro Actuator. Moreover, micro-fluid systems may be applied in different areas after installing other units with proper designs. This study integrates and classifies the micropump...
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ndltd-TW-095NTU054890302015-12-07T04:03:59Z http://ndltd.ncl.edu.tw/handle/96088697834244783519 Numerical Analysis of Piezoelectric Micro Pump 壓電式微型幫浦之數值模擬 Li-Chih Lin 林立智 碩士 國立臺灣大學 機械工程學研究所 95 A micro-fluid system usually involves Micro Channel、Micro Valve、Micro Sensor and Micro Actuator. Moreover, micro-fluid systems may be applied in different areas after installing other units with proper designs. This study integrates and classifies the micropump into “Valve-less micro-pump” and “Valve micro-pump”, and uses CFD based computer simulations. The main idea is to develop a smaller size micro-pump with high flow rate. This study brings up new ideas of modified valve-less micro-pump, and a valve micro-pump with “one-side actuating” piezoelectric ceramic and PDMS valves. At the first part of this study, the simulations of the related references are to verify the moving grid in the CFD software and the accuracy between the simulation and experiment results. The valve-less micropump may improve the pump flow rate with a Tesla valve, and the interaction between working frequency and the valve movement in the valve micropump are discussed. And the pump rate of valve micro-pump can reach 120ml/min with the pump diaphragm vibration frequency set to 140 Hz. The developed simulation model can be used as the tool for analyzing and improving pump performance in the future. 馬小康 2007 學位論文 ; thesis 36 zh-TW |
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碩士 === 國立臺灣大學 === 機械工程學研究所 === 95 === A micro-fluid system usually involves Micro Channel、Micro Valve、Micro Sensor and Micro Actuator. Moreover, micro-fluid systems may be applied in different areas after installing other units with proper designs. This study integrates and classifies the micropump into “Valve-less micro-pump” and “Valve micro-pump”, and uses CFD based computer simulations. The main idea is to develop a smaller size micro-pump with high flow rate.
This study brings up new ideas of modified valve-less micro-pump, and a valve micro-pump with “one-side actuating” piezoelectric ceramic and PDMS valves. At the first part of this study, the simulations of the related references are to verify the moving grid in the CFD software and the accuracy between the simulation and experiment results. The valve-less micropump may improve the pump flow rate with a Tesla valve, and the interaction between working frequency and the valve movement in the valve micropump are discussed. And the pump rate of valve micro-pump can reach 120ml/min with the pump diaphragm vibration frequency set to 140 Hz. The developed simulation model can be used as the tool for analyzing and improving pump performance in the future.
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author2 |
馬小康 |
author_facet |
馬小康 Li-Chih Lin 林立智 |
author |
Li-Chih Lin 林立智 |
spellingShingle |
Li-Chih Lin 林立智 Numerical Analysis of Piezoelectric Micro Pump |
author_sort |
Li-Chih Lin |
title |
Numerical Analysis of Piezoelectric Micro Pump |
title_short |
Numerical Analysis of Piezoelectric Micro Pump |
title_full |
Numerical Analysis of Piezoelectric Micro Pump |
title_fullStr |
Numerical Analysis of Piezoelectric Micro Pump |
title_full_unstemmed |
Numerical Analysis of Piezoelectric Micro Pump |
title_sort |
numerical analysis of piezoelectric micro pump |
publishDate |
2007 |
url |
http://ndltd.ncl.edu.tw/handle/96088697834244783519 |
work_keys_str_mv |
AT lichihlin numericalanalysisofpiezoelectricmicropump AT línlìzhì numericalanalysisofpiezoelectricmicropump AT lichihlin yādiànshìwēixíngbāngpǔzhīshùzhímónǐ AT línlìzhì yādiànshìwēixíngbāngpǔzhīshùzhímónǐ |
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