Methodology of heat transfer and flow resistance measurement for matrices of rotating regenerative heat exchangers

The theoretical basis for the indirect measurement approach of mean heat transfer coefficient for the packed bed based on the modified single blow technique was presented and discussed in the paper. The methodology of this measurement approach dedicated to the matrix of the rotating regenerative gas...

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Main Authors: Butrymowicz Dariusz, Karwacki Jarosław, Kwidziński Roman, Śmierciew Kamil, Gagan Jerzy, Przybyliński Tomasz, Skiepko Teodor, Łapin Marek
Format: Article
Language:English
Published: Polish Academy of Sciences Committee of Chemical and Process Engineering 2016-09-01
Series:Chemical and Process Engineering
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Online Access:http://www.degruyter.com/view/j/cpe.2016.37.issue-3/cpe-2016-0028/cpe-2016-0028.xml?format=INT
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author Butrymowicz Dariusz
Karwacki Jarosław
Kwidziński Roman
Śmierciew Kamil
Gagan Jerzy
Przybyliński Tomasz
Skiepko Teodor
Łapin Marek
author_facet Butrymowicz Dariusz
Karwacki Jarosław
Kwidziński Roman
Śmierciew Kamil
Gagan Jerzy
Przybyliński Tomasz
Skiepko Teodor
Łapin Marek
author_sort Butrymowicz Dariusz
collection DOAJ
description The theoretical basis for the indirect measurement approach of mean heat transfer coefficient for the packed bed based on the modified single blow technique was presented and discussed in the paper. The methodology of this measurement approach dedicated to the matrix of the rotating regenerative gas heater was discussed in detail. The testing stand consisted of a dedicated experimental tunnel with auxiliary equipment and a measurement system are presented. Selected experimental results are presented and discussed for selected types of matrices of regenerative air preheaters for the wide range of Reynolds number of gas. The agreement between the theoretically predicted and measured temperature profiles was demonstrated. The exemplary dimensionless relationships between Colburn heat transfer factor, Darcy flow resistance factor and Reynolds number were presented for the investigated matrices of the regenerative gas heater.
format Article
id doaj-art-04b3866f707c4d0f9d1cf57721ec1cbf
institution OA Journals
issn 2300-1925
language English
publishDate 2016-09-01
publisher Polish Academy of Sciences Committee of Chemical and Process Engineering
record_format Article
series Chemical and Process Engineering
spelling doaj-art-04b3866f707c4d0f9d1cf57721ec1cbf2025-08-20T02:13:31ZengPolish Academy of Sciences Committee of Chemical and Process EngineeringChemical and Process Engineering2300-19252016-09-0137334135810.1515/cpe-2016-0028cpe-2016-0028Methodology of heat transfer and flow resistance measurement for matrices of rotating regenerative heat exchangersButrymowicz Dariusz0Karwacki Jarosław1Kwidziński Roman2Śmierciew Kamil3Gagan Jerzy4Przybyliński Tomasz5Skiepko Teodor6Łapin Marek7Bialystok University of Technology, Faculty of Mechanical Engineering, ul. Wiejska 45C, 15-351 Bialystok, PolandInstitute Fluid Flow Machinery of PASc, ul. J. Fiszera 14, 80-231 Gdańsk, PolandInstitute Fluid Flow Machinery of PASc, ul. J. Fiszera 14, 80-231 Gdańsk, PolandBialystok University of Technology, Faculty of Mechanical Engineering, ul. Wiejska 45C, 15-351 Bialystok, PolandBialystok University of Technology, Faculty of Mechanical Engineering, ul. Wiejska 45C, 15-351 Bialystok, PolandInstitute Fluid Flow Machinery of PASc, ul. J. Fiszera 14, 80-231 Gdańsk, PolandBialystok University of Technology, Faculty of Mechanical Engineering, ul. Wiejska 45C, 15-351 Bialystok, PolandRAFAKO S.A., Design Team K132, ul. Łąkowa 33, 47-400 Racibórz, PolandThe theoretical basis for the indirect measurement approach of mean heat transfer coefficient for the packed bed based on the modified single blow technique was presented and discussed in the paper. The methodology of this measurement approach dedicated to the matrix of the rotating regenerative gas heater was discussed in detail. The testing stand consisted of a dedicated experimental tunnel with auxiliary equipment and a measurement system are presented. Selected experimental results are presented and discussed for selected types of matrices of regenerative air preheaters for the wide range of Reynolds number of gas. The agreement between the theoretically predicted and measured temperature profiles was demonstrated. The exemplary dimensionless relationships between Colburn heat transfer factor, Darcy flow resistance factor and Reynolds number were presented for the investigated matrices of the regenerative gas heater.http://www.degruyter.com/view/j/cpe.2016.37.issue-3/cpe-2016-0028/cpe-2016-0028.xml?format=INTheat transfersingle blow techniquerotating heat exchangerregenerator
spellingShingle Butrymowicz Dariusz
Karwacki Jarosław
Kwidziński Roman
Śmierciew Kamil
Gagan Jerzy
Przybyliński Tomasz
Skiepko Teodor
Łapin Marek
Methodology of heat transfer and flow resistance measurement for matrices of rotating regenerative heat exchangers
Chemical and Process Engineering
heat transfer
single blow technique
rotating heat exchanger
regenerator
title Methodology of heat transfer and flow resistance measurement for matrices of rotating regenerative heat exchangers
title_full Methodology of heat transfer and flow resistance measurement for matrices of rotating regenerative heat exchangers
title_fullStr Methodology of heat transfer and flow resistance measurement for matrices of rotating regenerative heat exchangers
title_full_unstemmed Methodology of heat transfer and flow resistance measurement for matrices of rotating regenerative heat exchangers
title_short Methodology of heat transfer and flow resistance measurement for matrices of rotating regenerative heat exchangers
title_sort methodology of heat transfer and flow resistance measurement for matrices of rotating regenerative heat exchangers
topic heat transfer
single blow technique
rotating heat exchanger
regenerator
url http://www.degruyter.com/view/j/cpe.2016.37.issue-3/cpe-2016-0028/cpe-2016-0028.xml?format=INT
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AT kwidzinskiroman methodologyofheattransferandflowresistancemeasurementformatricesofrotatingregenerativeheatexchangers
AT smierciewkamil methodologyofheattransferandflowresistancemeasurementformatricesofrotatingregenerativeheatexchangers
AT gaganjerzy methodologyofheattransferandflowresistancemeasurementformatricesofrotatingregenerativeheatexchangers
AT przybylinskitomasz methodologyofheattransferandflowresistancemeasurementformatricesofrotatingregenerativeheatexchangers
AT skiepkoteodor methodologyofheattransferandflowresistancemeasurementformatricesofrotatingregenerativeheatexchangers
AT łapinmarek methodologyofheattransferandflowresistancemeasurementformatricesofrotatingregenerativeheatexchangers