PENGARUH GEOMETRI DAN PENAMBAHAN JUMLAH SIRIP TERHADAP DISTRIBUSI TEMPERATUR HEAT SINK SEBAGAI ALTERNATIF PENDINGINAN PADA PIRANTI ELEKTRONIK

This study aims to determine the effect of the geometry shape of the copper material heat sink fins on the surface temperature distribution of the heat sink. The material used in this research is pure copper, the shape of the heat sink fins is made rippled with the addition of the number of fins 5,...

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Main Authors: Fajar Subekti, Slamet Wahyudi, Femiana Gapsari
Format: Article
Language:English
Published: University of Brawijaya 2023-12-01
Series:Rekayasa Mesin
Subjects:
Online Access:https://rekayasamesin.ub.ac.id/index.php/rm/article/view/1465
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author Fajar Subekti
Slamet Wahyudi
Femiana Gapsari
author_facet Fajar Subekti
Slamet Wahyudi
Femiana Gapsari
author_sort Fajar Subekti
collection DOAJ
description This study aims to determine the effect of the geometry shape of the copper material heat sink fins on the surface temperature distribution of the heat sink. The material used in this research is pure copper, the shape of the heat sink fins is made rippled with the addition of the number of fins 5, 6, and 7 and the input temperature is varied from 40 C to 80 C with airflow variations from 0.2 m/s to 1 m/s. The first step is to create a heat sink design with Autodesk Inventor. Then the plan is simulated with Autodesk CFD to solve the continuity, momentum, turbulence, and energy equations. Based on the method that has been carried out, it is found that the addition of variations in the number of fins affects the decrease in surface temperature. The highest temperature drop on fin 5 ripples is 24.1 C. The heat energy transfer rate increased by 0.4657 W. The convection heat transfer coefficient  increased by 3.47 W/m²C. Nusselt number shows an increase of 271. Fin performance has increased efficiency by  63.4 %, and effectiveness by 1.61. The results of this study are expected to provide practical alternatives that can be widely adopted on a heatsink plate that is very promising for future thermal developments.
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spelling doaj.art-2255b470a7aa4c1faa80db0a53c8f21a2023-12-30T14:38:30ZengUniversity of BrawijayaRekayasa Mesin2338-16632477-60412023-12-0114393995210.21776/jrm.v14i3.14651176PENGARUH GEOMETRI DAN PENAMBAHAN JUMLAH SIRIP TERHADAP DISTRIBUSI TEMPERATUR HEAT SINK SEBAGAI ALTERNATIF PENDINGINAN PADA PIRANTI ELEKTRONIKFajar Subekti0Slamet Wahyudi1Femiana Gapsari2Universitas BrawijayaUniversitas BrawijayaUniversitas BrawijayaThis study aims to determine the effect of the geometry shape of the copper material heat sink fins on the surface temperature distribution of the heat sink. The material used in this research is pure copper, the shape of the heat sink fins is made rippled with the addition of the number of fins 5, 6, and 7 and the input temperature is varied from 40 C to 80 C with airflow variations from 0.2 m/s to 1 m/s. The first step is to create a heat sink design with Autodesk Inventor. Then the plan is simulated with Autodesk CFD to solve the continuity, momentum, turbulence, and energy equations. Based on the method that has been carried out, it is found that the addition of variations in the number of fins affects the decrease in surface temperature. The highest temperature drop on fin 5 ripples is 24.1 C. The heat energy transfer rate increased by 0.4657 W. The convection heat transfer coefficient  increased by 3.47 W/m²C. Nusselt number shows an increase of 271. Fin performance has increased efficiency by  63.4 %, and effectiveness by 1.61. The results of this study are expected to provide practical alternatives that can be widely adopted on a heatsink plate that is very promising for future thermal developments.https://rekayasamesin.ub.ac.id/index.php/rm/article/view/1465heat sinkrippled finsnatural convectionnumerical investigation
spellingShingle Fajar Subekti
Slamet Wahyudi
Femiana Gapsari
PENGARUH GEOMETRI DAN PENAMBAHAN JUMLAH SIRIP TERHADAP DISTRIBUSI TEMPERATUR HEAT SINK SEBAGAI ALTERNATIF PENDINGINAN PADA PIRANTI ELEKTRONIK
Rekayasa Mesin
heat sink
rippled fins
natural convection
numerical investigation
title PENGARUH GEOMETRI DAN PENAMBAHAN JUMLAH SIRIP TERHADAP DISTRIBUSI TEMPERATUR HEAT SINK SEBAGAI ALTERNATIF PENDINGINAN PADA PIRANTI ELEKTRONIK
title_full PENGARUH GEOMETRI DAN PENAMBAHAN JUMLAH SIRIP TERHADAP DISTRIBUSI TEMPERATUR HEAT SINK SEBAGAI ALTERNATIF PENDINGINAN PADA PIRANTI ELEKTRONIK
title_fullStr PENGARUH GEOMETRI DAN PENAMBAHAN JUMLAH SIRIP TERHADAP DISTRIBUSI TEMPERATUR HEAT SINK SEBAGAI ALTERNATIF PENDINGINAN PADA PIRANTI ELEKTRONIK
title_full_unstemmed PENGARUH GEOMETRI DAN PENAMBAHAN JUMLAH SIRIP TERHADAP DISTRIBUSI TEMPERATUR HEAT SINK SEBAGAI ALTERNATIF PENDINGINAN PADA PIRANTI ELEKTRONIK
title_short PENGARUH GEOMETRI DAN PENAMBAHAN JUMLAH SIRIP TERHADAP DISTRIBUSI TEMPERATUR HEAT SINK SEBAGAI ALTERNATIF PENDINGINAN PADA PIRANTI ELEKTRONIK
title_sort pengaruh geometri dan penambahan jumlah sirip terhadap distribusi temperatur heat sink sebagai alternatif pendinginan pada piranti elektronik
topic heat sink
rippled fins
natural convection
numerical investigation
url https://rekayasamesin.ub.ac.id/index.php/rm/article/view/1465
work_keys_str_mv AT fajarsubekti pengaruhgeometridanpenambahanjumlahsiripterhadapdistribusitemperaturheatsinksebagaialternatifpendinginanpadapirantielektronik
AT slametwahyudi pengaruhgeometridanpenambahanjumlahsiripterhadapdistribusitemperaturheatsinksebagaialternatifpendinginanpadapirantielektronik
AT femianagapsari pengaruhgeometridanpenambahanjumlahsiripterhadapdistribusitemperaturheatsinksebagaialternatifpendinginanpadapirantielektronik