The effect of using compound techniques (passive and active) on the double pipe heat exchanger performance

This experimental study explores the effect of using compound technique (passive techniques (packing the shell side with small cylindrical aluminium pieces) and active techniques (air injection or bubble generation) were securitized. It is conducted for both configurations (parallel and counter) flo...

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Published in:Egyptian Journal of Chemistry
Main Author: Hamed H.H.; Mohammed A.E.; Khalefa R.A.; Habeeb O.A.; Abdulqader M.A.
Format: Article
Language:English
Published: NIDOC (Nat.Inform.Document.Centre) 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85106868717&doi=10.21608%2fejchem.2021.54450.3134&partnerID=40&md5=f28d90c438825e6fead9f689e8652924
id 2-s2.0-85106868717
spelling 2-s2.0-85106868717
Hamed H.H.; Mohammed A.E.; Khalefa R.A.; Habeeb O.A.; Abdulqader M.A.
The effect of using compound techniques (passive and active) on the double pipe heat exchanger performance
2021
Egyptian Journal of Chemistry
64
6
10.21608/ejchem.2021.54450.3134
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85106868717&doi=10.21608%2fejchem.2021.54450.3134&partnerID=40&md5=f28d90c438825e6fead9f689e8652924
This experimental study explores the effect of using compound technique (passive techniques (packing the shell side with small cylindrical aluminium pieces) and active techniques (air injection or bubble generation) were securitized. It is conducted for both configurations (parallel and counter) flow with applying both techniques (compound) at the same conditions in a double pipe heat exchanger. The main objective of this study is to indicate the effect of employing the two techniques simultaneously and compare the outcomes without and with the passive (packing) method under the same conditions. The heat transfer of heat exchanger in terms of cost and size has been. For this purpose, the test rig is prepared by designing and making a suitable heat exchanger equipped with flow meters and thermocouples for measuring flow rates and temperatures (Tin and Tout) of both fluids (hot and cold). The hot fluid is heated in a small tank by electrical heater with temperature controller from (TEquipment). The results show that the performance parameters of the heat exchanger enhanced about (15%) for case of applying the both techniques together and (25) % for case of using active method only. © 2021 NIDOC (Nat.Inform.Document.Centre). All rights reserved.
NIDOC (Nat.Inform.Document.Centre)
4492285
English
Article
All Open Access; Bronze Open Access
author Hamed H.H.; Mohammed A.E.; Khalefa R.A.; Habeeb O.A.; Abdulqader M.A.
spellingShingle Hamed H.H.; Mohammed A.E.; Khalefa R.A.; Habeeb O.A.; Abdulqader M.A.
The effect of using compound techniques (passive and active) on the double pipe heat exchanger performance
author_facet Hamed H.H.; Mohammed A.E.; Khalefa R.A.; Habeeb O.A.; Abdulqader M.A.
author_sort Hamed H.H.; Mohammed A.E.; Khalefa R.A.; Habeeb O.A.; Abdulqader M.A.
title The effect of using compound techniques (passive and active) on the double pipe heat exchanger performance
title_short The effect of using compound techniques (passive and active) on the double pipe heat exchanger performance
title_full The effect of using compound techniques (passive and active) on the double pipe heat exchanger performance
title_fullStr The effect of using compound techniques (passive and active) on the double pipe heat exchanger performance
title_full_unstemmed The effect of using compound techniques (passive and active) on the double pipe heat exchanger performance
title_sort The effect of using compound techniques (passive and active) on the double pipe heat exchanger performance
publishDate 2021
container_title Egyptian Journal of Chemistry
container_volume 64
container_issue 6
doi_str_mv 10.21608/ejchem.2021.54450.3134
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85106868717&doi=10.21608%2fejchem.2021.54450.3134&partnerID=40&md5=f28d90c438825e6fead9f689e8652924
description This experimental study explores the effect of using compound technique (passive techniques (packing the shell side with small cylindrical aluminium pieces) and active techniques (air injection or bubble generation) were securitized. It is conducted for both configurations (parallel and counter) flow with applying both techniques (compound) at the same conditions in a double pipe heat exchanger. The main objective of this study is to indicate the effect of employing the two techniques simultaneously and compare the outcomes without and with the passive (packing) method under the same conditions. The heat transfer of heat exchanger in terms of cost and size has been. For this purpose, the test rig is prepared by designing and making a suitable heat exchanger equipped with flow meters and thermocouples for measuring flow rates and temperatures (Tin and Tout) of both fluids (hot and cold). The hot fluid is heated in a small tank by electrical heater with temperature controller from (TEquipment). The results show that the performance parameters of the heat exchanger enhanced about (15%) for case of applying the both techniques together and (25) % for case of using active method only. © 2021 NIDOC (Nat.Inform.Document.Centre). All rights reserved.
publisher NIDOC (Nat.Inform.Document.Centre)
issn 4492285
language English
format Article
accesstype All Open Access; Bronze Open Access
record_format scopus
collection Scopus
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