The Utilisation of Waste Heat from Exhaust Gases after Drying Process in Plate Heat Exchanger

In many industrial applications, a considerable amount of heat is wasted with off and flue gases of different compositions, carrying not only sensible heat but also latent heat of condensable gas contained in the outgoing gaseous mixture. It is especially crucial for waste heat recovery from exhaust...

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Main Authors: Petro Kapustenko, Jirí Jaromír Klemeš, Olga Arsenyeva, Olena Fedorenko, Sergiy Kusakov, Svetlana Bukhkalo
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2020-08-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/11040
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spelling doaj-3c67cda84a1e456d942092ef0a6e08fc2021-02-16T11:28:03ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162020-08-018110.3303/CET2081099The Utilisation of Waste Heat from Exhaust Gases after Drying Process in Plate Heat ExchangerPetro KapustenkoJirí Jaromír KlemešOlga ArsenyevaOlena FedorenkoSergiy KusakovSvetlana BukhkaloIn many industrial applications, a considerable amount of heat is wasted with off and flue gases of different compositions, carrying not only sensible heat but also latent heat of condensable gas contained in the outgoing gaseous mixture. It is especially crucial for waste heat recovery from exhaust gases in such processes as the drying of different materials. Based on the mathematical model published in a previous paper for the models of PHE channels corrugated field the mathematical model of the thermal and hydraulic performance of PHE assembled from commercially produced plates is developed. It accounts for processes at the main corrugated field and also in PHE collectors and channels distribution zones. The results of mathematical modelling are compared with data obtained on a pilot unit for utilisation of waste heat from gases coming after tobacco drying. The PHE type TS-6MFG produced by AlfaLaval is tested. The content of the air incoming air-steam mixture was 10 % at a temperature of 140 °C. The comparison of modelling results and tests data have shown good accuracy of prediction. It allowed recommending obtained correlations and developed a mathematical model for the design of plate heat exchangers in applications with heat utilisation from exhaust gases after drying processes in the industry.https://www.cetjournal.it/index.php/cet/article/view/11040
collection DOAJ
language English
format Article
sources DOAJ
author Petro Kapustenko
Jirí Jaromír Klemeš
Olga Arsenyeva
Olena Fedorenko
Sergiy Kusakov
Svetlana Bukhkalo
spellingShingle Petro Kapustenko
Jirí Jaromír Klemeš
Olga Arsenyeva
Olena Fedorenko
Sergiy Kusakov
Svetlana Bukhkalo
The Utilisation of Waste Heat from Exhaust Gases after Drying Process in Plate Heat Exchanger
Chemical Engineering Transactions
author_facet Petro Kapustenko
Jirí Jaromír Klemeš
Olga Arsenyeva
Olena Fedorenko
Sergiy Kusakov
Svetlana Bukhkalo
author_sort Petro Kapustenko
title The Utilisation of Waste Heat from Exhaust Gases after Drying Process in Plate Heat Exchanger
title_short The Utilisation of Waste Heat from Exhaust Gases after Drying Process in Plate Heat Exchanger
title_full The Utilisation of Waste Heat from Exhaust Gases after Drying Process in Plate Heat Exchanger
title_fullStr The Utilisation of Waste Heat from Exhaust Gases after Drying Process in Plate Heat Exchanger
title_full_unstemmed The Utilisation of Waste Heat from Exhaust Gases after Drying Process in Plate Heat Exchanger
title_sort utilisation of waste heat from exhaust gases after drying process in plate heat exchanger
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2020-08-01
description In many industrial applications, a considerable amount of heat is wasted with off and flue gases of different compositions, carrying not only sensible heat but also latent heat of condensable gas contained in the outgoing gaseous mixture. It is especially crucial for waste heat recovery from exhaust gases in such processes as the drying of different materials. Based on the mathematical model published in a previous paper for the models of PHE channels corrugated field the mathematical model of the thermal and hydraulic performance of PHE assembled from commercially produced plates is developed. It accounts for processes at the main corrugated field and also in PHE collectors and channels distribution zones. The results of mathematical modelling are compared with data obtained on a pilot unit for utilisation of waste heat from gases coming after tobacco drying. The PHE type TS-6MFG produced by AlfaLaval is tested. The content of the air incoming air-steam mixture was 10 % at a temperature of 140 °C. The comparison of modelling results and tests data have shown good accuracy of prediction. It allowed recommending obtained correlations and developed a mathematical model for the design of plate heat exchangers in applications with heat utilisation from exhaust gases after drying processes in the industry.
url https://www.cetjournal.it/index.php/cet/article/view/11040
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