The Effect of Orifice Shape on Convective Heat Transfer of an Impinging Synthetic Jet

A greater heat load due to the miniaturization of electronic products causes the need for a new cooling system that works more efficiently and has a high thermal capacity. A synthetic jet is potentially useful for the cooling of electronic components. This paper reports the results of our ex...

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Main Authors: Harinaldi, Christoforus Deberland, Damora Rhakasywi
Format: Article
Language:English
Published: Universitas Indonesia 2014-01-01
Series:International Journal of Technology
Subjects:
Online Access:http://ijtech.eng.ui.ac.id/article/view/1254
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spelling doaj-8c4a492abf584c84b447c87d52e299422020-11-25T02:31:26ZengUniversitas IndonesiaInternational Journal of Technology2086-96142087-21002014-01-014323223910.14716/ijtech.v4i3.12541254The Effect of Orifice Shape on Convective Heat Transfer of an Impinging Synthetic JetHarinaldi0Christoforus Deberland1Damora Rhakasywi2Mechanical Engineering Department, Faculty of Engineering, Universitas Indonesia, Kampus Baru UI Depok 16424, IndonesiaMechanical Engineering Department, Faculty of Engineering, Universitas Indonesia, Kampus Baru UI Depok 16424, IndonesiaMechanical Engineering Department, Faculty of Engineering, Universitas Indonesia, Kampus Baru UI Depok 16424, IndonesiaA greater heat load due to the miniaturization of electronic products causes the need for a new cooling system that works more efficiently and has a high thermal capacity. A synthetic jet is potentially useful for the cooling of electronic components. This paper reports the results of our experimental studies and the influence of orifice shape for Impinging Synthetic Jet cooling perfomance. The effect of shape of the orifice of an impinging synthetic jet assembly on the apparatus cooling of a heated surface is experimentally investigated. It will be seen that the characteristics of convective heat transfer will occur by moving the piezoelectric membrane. The prototype of the synthetic jet actuator is coupled with two piezoelectric membranes that operate by 5 volt electrical current and create a sinusoidal wave. The orifice shapes considered are square and circular. The results show the significant influence of orifice shape and sinusoidal wave frequencies on the heat transfer rate that were obtained. The temperature drop with a square orifice is found to be larger than that with circular shapes. A square orifice has a larger covered area if compared to the circular orifice at the same radius, thus resulting in a larger entrainment rate that leads to an increase of heat transfer performance.http://ijtech.eng.ui.ac.id/article/view/1254Cooling, Impinging synthetic jet, Orifice, Temperature drop
collection DOAJ
language English
format Article
sources DOAJ
author Harinaldi
Christoforus Deberland
Damora Rhakasywi
spellingShingle Harinaldi
Christoforus Deberland
Damora Rhakasywi
The Effect of Orifice Shape on Convective Heat Transfer of an Impinging Synthetic Jet
International Journal of Technology
Cooling, Impinging synthetic jet, Orifice, Temperature drop
author_facet Harinaldi
Christoforus Deberland
Damora Rhakasywi
author_sort Harinaldi
title The Effect of Orifice Shape on Convective Heat Transfer of an Impinging Synthetic Jet
title_short The Effect of Orifice Shape on Convective Heat Transfer of an Impinging Synthetic Jet
title_full The Effect of Orifice Shape on Convective Heat Transfer of an Impinging Synthetic Jet
title_fullStr The Effect of Orifice Shape on Convective Heat Transfer of an Impinging Synthetic Jet
title_full_unstemmed The Effect of Orifice Shape on Convective Heat Transfer of an Impinging Synthetic Jet
title_sort effect of orifice shape on convective heat transfer of an impinging synthetic jet
publisher Universitas Indonesia
series International Journal of Technology
issn 2086-9614
2087-2100
publishDate 2014-01-01
description A greater heat load due to the miniaturization of electronic products causes the need for a new cooling system that works more efficiently and has a high thermal capacity. A synthetic jet is potentially useful for the cooling of electronic components. This paper reports the results of our experimental studies and the influence of orifice shape for Impinging Synthetic Jet cooling perfomance. The effect of shape of the orifice of an impinging synthetic jet assembly on the apparatus cooling of a heated surface is experimentally investigated. It will be seen that the characteristics of convective heat transfer will occur by moving the piezoelectric membrane. The prototype of the synthetic jet actuator is coupled with two piezoelectric membranes that operate by 5 volt electrical current and create a sinusoidal wave. The orifice shapes considered are square and circular. The results show the significant influence of orifice shape and sinusoidal wave frequencies on the heat transfer rate that were obtained. The temperature drop with a square orifice is found to be larger than that with circular shapes. A square orifice has a larger covered area if compared to the circular orifice at the same radius, thus resulting in a larger entrainment rate that leads to an increase of heat transfer performance.
topic Cooling, Impinging synthetic jet, Orifice, Temperature drop
url http://ijtech.eng.ui.ac.id/article/view/1254
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