Flexible aluminium ducts air tightness testing

The scope of the research presented in this paper are aluminum flexible ducts which have a wide application in heating, ventilation, air conditioning and process engineering. Aluminum flexible ducts consist of several alternating layers of aluminum and polyester and steel wire bent into a spiral, wh...

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Main Authors: Bikić Siniša, Bukurov Maša, Marković Bojan, Pavkov Ivan, Radojčin Milivoj
Format: Article
Language:English
Published: National Society of Processing and Energy in Agriculture, Novi Sad 2014-01-01
Series:Journal on Processing and Energy in Agriculture
Subjects:
Online Access:https://scindeks-clanci.ceon.rs/data/pdf/1821-4487/2014/1821-44871402065B.pdf
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author Bikić Siniša
Bukurov Maša
Marković Bojan
Pavkov Ivan
Radojčin Milivoj
author_facet Bikić Siniša
Bukurov Maša
Marković Bojan
Pavkov Ivan
Radojčin Milivoj
author_sort Bikić Siniša
collection DOAJ
description The scope of the research presented in this paper are aluminum flexible ducts which have a wide application in heating, ventilation, air conditioning and process engineering. Aluminum flexible ducts consist of several alternating layers of aluminum and polyester and steel wire bent into a spiral, while the merger of layers is done using glue. The loss of energy in the air stream through the aluminum flexible duct is due to friction of air stream and air leakage through the walls of the duct. In order to reduce energy consumption after the installation of the ducts it is needed to check mechanical properties of aluminum flexible ducts right after manufacture. Checking of the mechanical characteristics of aluminum flexible ducts is done according to recommendations of standard (EN 13180, 2002). Within the standard for testing mechanical properties of aluminum flexible ducts it is predicted to check tightness of ducts and to grade duct quality from the point of tightness. The aim of this paper is to present the air tightness testing of ducts and grade duct quality from the point of tightness with proposed methodology. Testing of the samples is shown for the following aluminum flexible duct diameters: 82 mm, 102 mm, 203 mm, 315 mm and 356 mm. The proposed methodology does not take into account that the heated air in the duct could potentially affect the tightness of bonded layers of the duct wall. For this reason in the future is recommended to test air tightness of ducts with heated air at different temperatures, in order to see the effect of the air temperature on the tightness.
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spelling doaj.art-2f1c918eecbf46af84e50c11d34723182022-12-22T02:55:40ZengNational Society of Processing and Energy in Agriculture, Novi SadJournal on Processing and Energy in Agriculture1821-44872956-01952014-01-0118265671821-44871402065BFlexible aluminium ducts air tightness testingBikić Siniša0https://orcid.org/0000-0002-1641-8546Bukurov Maša1https://orcid.org/0000-0002-6171-2226Marković Bojan2Pavkov Ivan3https://orcid.org/0000-0002-9303-2778Radojčin Milivoj4https://orcid.org/0000-0002-2864-7872University of Novi Sad, Faculty of Technical Sciences, Novi Sad, SerbiaUniversity of Novi Sad, Faculty of Technical Sciences, Novi Sad, SerbiaUniversity of Novi Sad, Faculty of Technical Sciences, Novi Sad, SerbiaUniversity of Novi Sad, Faculty of Agriculture, Novi Sad, SerbiaUniversity of Novi Sad, Faculty of Agriculture, Novi Sad, SerbiaThe scope of the research presented in this paper are aluminum flexible ducts which have a wide application in heating, ventilation, air conditioning and process engineering. Aluminum flexible ducts consist of several alternating layers of aluminum and polyester and steel wire bent into a spiral, while the merger of layers is done using glue. The loss of energy in the air stream through the aluminum flexible duct is due to friction of air stream and air leakage through the walls of the duct. In order to reduce energy consumption after the installation of the ducts it is needed to check mechanical properties of aluminum flexible ducts right after manufacture. Checking of the mechanical characteristics of aluminum flexible ducts is done according to recommendations of standard (EN 13180, 2002). Within the standard for testing mechanical properties of aluminum flexible ducts it is predicted to check tightness of ducts and to grade duct quality from the point of tightness. The aim of this paper is to present the air tightness testing of ducts and grade duct quality from the point of tightness with proposed methodology. Testing of the samples is shown for the following aluminum flexible duct diameters: 82 mm, 102 mm, 203 mm, 315 mm and 356 mm. The proposed methodology does not take into account that the heated air in the duct could potentially affect the tightness of bonded layers of the duct wall. For this reason in the future is recommended to test air tightness of ducts with heated air at different temperatures, in order to see the effect of the air temperature on the tightness.https://scindeks-clanci.ceon.rs/data/pdf/1821-4487/2014/1821-44871402065B.pdfaluminum flexible tubetube leaksenergy loss
spellingShingle Bikić Siniša
Bukurov Maša
Marković Bojan
Pavkov Ivan
Radojčin Milivoj
Flexible aluminium ducts air tightness testing
Journal on Processing and Energy in Agriculture
aluminum flexible tube
tube leaks
energy loss
title Flexible aluminium ducts air tightness testing
title_full Flexible aluminium ducts air tightness testing
title_fullStr Flexible aluminium ducts air tightness testing
title_full_unstemmed Flexible aluminium ducts air tightness testing
title_short Flexible aluminium ducts air tightness testing
title_sort flexible aluminium ducts air tightness testing
topic aluminum flexible tube
tube leaks
energy loss
url https://scindeks-clanci.ceon.rs/data/pdf/1821-4487/2014/1821-44871402065B.pdf
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AT bukurovmasa flexiblealuminiumductsairtightnesstesting
AT markovicbojan flexiblealuminiumductsairtightnesstesting
AT pavkovivan flexiblealuminiumductsairtightnesstesting
AT radojcinmilivoj flexiblealuminiumductsairtightnesstesting