Investigation of helical flow by using tracer technique

The flow through coiled tubes is, in practice, important for pipe systems, heat exchangers, chemical reactors, mixers of different gas components, etc., and is physically interesting because of the peculiar characteristics caused by the centrifugal force. Therefore, it is not so easy to observe flow...

Full description

Bibliographic Details
Main Authors: Hacıyakupoğlu S., Karatepe N., Baydoğan N., Baytaş F., Tuğrul A.B., Altınsoy N., Büyük B.
Format: Article
Language:English
Published: EDP Sciences 2013-05-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20135001001
id doaj-7cc4ad4d90864922bd3393ed79a418f7
record_format Article
spelling doaj-7cc4ad4d90864922bd3393ed79a418f72021-08-02T07:24:31ZengEDP SciencesEPJ Web of Conferences2100-014X2013-05-01500100110.1051/epjconf/20135001001Investigation of helical flow by using tracer techniqueHacıyakupoğlu S.Karatepe N.Baydoğan N.Baytaş F.Tuğrul A.B.Altınsoy N.Büyük B.The flow through coiled tubes is, in practice, important for pipe systems, heat exchangers, chemical reactors, mixers of different gas components, etc., and is physically interesting because of the peculiar characteristics caused by the centrifugal force. Therefore, it is not so easy to observe flow parameters in the helical pipe experimentally. Tracer techniques are being increasingly used to determine characteristics such as volume flow rate, residence time, dispersion and mixing process in industry. In this study, the flow in the helical pipe was obtained in the laboratory and investigated by using the tracer technique. The experimental system including the helical pipe was set up in the laboratory. In the experiments methylene-blue (C16H17N3S) has been used as the tracer. The experiments were successfully performed with different flow rates and their results were evaluated with the flow parameters. http://dx.doi.org/10.1051/epjconf/20135001001
collection DOAJ
language English
format Article
sources DOAJ
author Hacıyakupoğlu S.
Karatepe N.
Baydoğan N.
Baytaş F.
Tuğrul A.B.
Altınsoy N.
Büyük B.
spellingShingle Hacıyakupoğlu S.
Karatepe N.
Baydoğan N.
Baytaş F.
Tuğrul A.B.
Altınsoy N.
Büyük B.
Investigation of helical flow by using tracer technique
EPJ Web of Conferences
author_facet Hacıyakupoğlu S.
Karatepe N.
Baydoğan N.
Baytaş F.
Tuğrul A.B.
Altınsoy N.
Büyük B.
author_sort Hacıyakupoğlu S.
title Investigation of helical flow by using tracer technique
title_short Investigation of helical flow by using tracer technique
title_full Investigation of helical flow by using tracer technique
title_fullStr Investigation of helical flow by using tracer technique
title_full_unstemmed Investigation of helical flow by using tracer technique
title_sort investigation of helical flow by using tracer technique
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2013-05-01
description The flow through coiled tubes is, in practice, important for pipe systems, heat exchangers, chemical reactors, mixers of different gas components, etc., and is physically interesting because of the peculiar characteristics caused by the centrifugal force. Therefore, it is not so easy to observe flow parameters in the helical pipe experimentally. Tracer techniques are being increasingly used to determine characteristics such as volume flow rate, residence time, dispersion and mixing process in industry. In this study, the flow in the helical pipe was obtained in the laboratory and investigated by using the tracer technique. The experimental system including the helical pipe was set up in the laboratory. In the experiments methylene-blue (C16H17N3S) has been used as the tracer. The experiments were successfully performed with different flow rates and their results were evaluated with the flow parameters.
url http://dx.doi.org/10.1051/epjconf/20135001001
work_keys_str_mv AT hacıyakupoglus investigationofhelicalflowbyusingtracertechnique
AT karatepen investigationofhelicalflowbyusingtracertechnique
AT baydogann investigationofhelicalflowbyusingtracertechnique
AT baytasf investigationofhelicalflowbyusingtracertechnique
AT tugrulab investigationofhelicalflowbyusingtracertechnique
AT altınsoyn investigationofhelicalflowbyusingtracertechnique
AT buyukb investigationofhelicalflowbyusingtracertechnique
_version_ 1721239357268951040