The Effect of Baffle Spiral on The Performance of Heat Exchanger

The application of heat exchanger still causes many problems. Research on the performance improvement of the heat exchanger is also conducted by adding baffle. This research is aimed at finding out the influence of spiral baffle on the performance of heat exchanger. Research is conducted by doing ex...

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Main Authors: Adi Pratama Putra, Ikhwanul Qiram
Format: Article
Language:English
Published: Politeknik Negeri Bali 2018-11-01
Series:Matrix: Jurnal Manajemen Teknologi dan Informatika
Online Access:http://ojs.pnb.ac.id/index.php/LOGIC/article/view/1132
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spelling doaj-870c153b4a8e4c7e8e7d357f5791b19c2020-11-25T01:57:25ZengPoliteknik Negeri BaliMatrix: Jurnal Manajemen Teknologi dan Informatika1412-114X2580-56302018-11-01183869110.31940/logic.v18i3.11321132The Effect of Baffle Spiral on The Performance of Heat ExchangerAdi Pratama Putra0Ikhwanul Qiram1Universitas PGRI BanyuwangiUniversitas PGRI BanyuwangiThe application of heat exchanger still causes many problems. Research on the performance improvement of the heat exchanger is also conducted by adding baffle. This research is aimed at finding out the influence of spiral baffle on the performance of heat exchanger. Research is conducted by doing experiment. The heat exchanger used is the opposite flow type. The independent variable includes round and triangular springs with gap spacing of 1, 2 and 3 cm which are installed in the heat pipe. The flow rate of the water is varied by 100, 150, 200 and 250 ml / sec. The dependent variable includes the temperature of hot water (in and out) and the temperature of cold water (in and out). Temperature measurement is done by using a K type thermocouple every minute for 5 minutes. Discharge measurement is done by using flow meter and stopwatch. The results showed that there were effects of the spiral and water discharge variation on the rate of heat transfer. The phenomenon of water discharge is inversely proportional to the rate of temperature change. Maximum heat temperature displacement occurred at a variation of 1.5 cm with a flow rate of 31.25 was 1.44o. The minimum heat transfer temperature occurred at a variation of 0.5 cm with a flow rate of 38.46 was 0.82o. The maximum cold temperature heat transfer occurred at a variation of 1.5 cm with a flow rate of 31.25 was 0.52o and the minimum occurred at variation of 0.5 cm with a flow discharge of 38.46 was 0.14o.http://ojs.pnb.ac.id/index.php/LOGIC/article/view/1132
collection DOAJ
language English
format Article
sources DOAJ
author Adi Pratama Putra
Ikhwanul Qiram
spellingShingle Adi Pratama Putra
Ikhwanul Qiram
The Effect of Baffle Spiral on The Performance of Heat Exchanger
Matrix: Jurnal Manajemen Teknologi dan Informatika
author_facet Adi Pratama Putra
Ikhwanul Qiram
author_sort Adi Pratama Putra
title The Effect of Baffle Spiral on The Performance of Heat Exchanger
title_short The Effect of Baffle Spiral on The Performance of Heat Exchanger
title_full The Effect of Baffle Spiral on The Performance of Heat Exchanger
title_fullStr The Effect of Baffle Spiral on The Performance of Heat Exchanger
title_full_unstemmed The Effect of Baffle Spiral on The Performance of Heat Exchanger
title_sort effect of baffle spiral on the performance of heat exchanger
publisher Politeknik Negeri Bali
series Matrix: Jurnal Manajemen Teknologi dan Informatika
issn 1412-114X
2580-5630
publishDate 2018-11-01
description The application of heat exchanger still causes many problems. Research on the performance improvement of the heat exchanger is also conducted by adding baffle. This research is aimed at finding out the influence of spiral baffle on the performance of heat exchanger. Research is conducted by doing experiment. The heat exchanger used is the opposite flow type. The independent variable includes round and triangular springs with gap spacing of 1, 2 and 3 cm which are installed in the heat pipe. The flow rate of the water is varied by 100, 150, 200 and 250 ml / sec. The dependent variable includes the temperature of hot water (in and out) and the temperature of cold water (in and out). Temperature measurement is done by using a K type thermocouple every minute for 5 minutes. Discharge measurement is done by using flow meter and stopwatch. The results showed that there were effects of the spiral and water discharge variation on the rate of heat transfer. The phenomenon of water discharge is inversely proportional to the rate of temperature change. Maximum heat temperature displacement occurred at a variation of 1.5 cm with a flow rate of 31.25 was 1.44o. The minimum heat transfer temperature occurred at a variation of 0.5 cm with a flow rate of 38.46 was 0.82o. The maximum cold temperature heat transfer occurred at a variation of 1.5 cm with a flow rate of 31.25 was 0.52o and the minimum occurred at variation of 0.5 cm with a flow discharge of 38.46 was 0.14o.
url http://ojs.pnb.ac.id/index.php/LOGIC/article/view/1132
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