AT EXCHANGE PROCESS IN ROTARY REGENERATIVE AIR PRE–HEATER

A simplified mathematical model of a rotary regenerative air pre–heater (RRAP) is suggested and studied based on the averaged dynamics of the heat exchange process between nozzles and a heat carrier (i.e. air or gas–smoke mixture). Averaging in both spatial coordinates and time gives a linear discre...

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Main Authors: Abdulla A. Azamov, Mansur A. Bekimov
Format: Article
Language:English
Published: Ural Branch of the Russian Academy of Sciences and Ural Federal University named after the first President of Russia B.N.Yeltsin, Krasovskii Institute of Mathematics and Mechanics 2016-11-01
Series:Ural Mathematical Journal
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Online Access:https://umjuran.ru/index.php/umj/article/view/56
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author Abdulla A. Azamov
Mansur A. Bekimov
author_facet Abdulla A. Azamov
Mansur A. Bekimov
author_sort Abdulla A. Azamov
collection DOAJ
description A simplified mathematical model of a rotary regenerative air pre–heater (RRAP) is suggested and studied based on the averaged dynamics of the heat exchange process between nozzles and a heat carrier (i.e. air or gas–smoke mixture). Averaging in both spatial coordinates and time gives a linear discrete system that allows deriving explicit formulas for determining the characteristics of the air heater and establishing some properties such as periodicity, stability, ergodicity and others.
format Article
id doaj-art-69956cc4cbbf44fba501980bdda85d38
institution DOAJ
issn 2414-3952
language English
publishDate 2016-11-01
publisher Ural Branch of the Russian Academy of Sciences and Ural Federal University named after the first President of Russia B.N.Yeltsin, Krasovskii Institute of Mathematics and Mechanics
record_format Article
series Ural Mathematical Journal
spelling doaj-art-69956cc4cbbf44fba501980bdda85d382025-08-20T02:52:02ZengUral Branch of the Russian Academy of Sciences and Ural Federal University named after the first President of Russia B.N.Yeltsin, Krasovskii Institute of Mathematics and MechanicsUral Mathematical Journal2414-39522016-11-012210.15826/umj.2016.2.00319AT EXCHANGE PROCESS IN ROTARY REGENERATIVE AIR PRE–HEATERAbdulla A. Azamov0Mansur A. Bekimov1Institute of Mathematics, National University of Uzbekistan, TashkentInstitute of Mathematics, National University of Uzbekistan, TashkentA simplified mathematical model of a rotary regenerative air pre–heater (RRAP) is suggested and studied based on the averaged dynamics of the heat exchange process between nozzles and a heat carrier (i.e. air or gas–smoke mixture). Averaging in both spatial coordinates and time gives a linear discrete system that allows deriving explicit formulas for determining the characteristics of the air heater and establishing some properties such as periodicity, stability, ergodicity and others.https://umjuran.ru/index.php/umj/article/view/56Heat exchange, Cyclic process, Averaging, Linear discrete system, Stability, Ergodicity, Inverse problem.
spellingShingle Abdulla A. Azamov
Mansur A. Bekimov
AT EXCHANGE PROCESS IN ROTARY REGENERATIVE AIR PRE–HEATER
Ural Mathematical Journal
Heat exchange, Cyclic process, Averaging, Linear discrete system, Stability, Ergodicity, Inverse problem.
title AT EXCHANGE PROCESS IN ROTARY REGENERATIVE AIR PRE–HEATER
title_full AT EXCHANGE PROCESS IN ROTARY REGENERATIVE AIR PRE–HEATER
title_fullStr AT EXCHANGE PROCESS IN ROTARY REGENERATIVE AIR PRE–HEATER
title_full_unstemmed AT EXCHANGE PROCESS IN ROTARY REGENERATIVE AIR PRE–HEATER
title_short AT EXCHANGE PROCESS IN ROTARY REGENERATIVE AIR PRE–HEATER
title_sort at exchange process in rotary regenerative air pre heater
topic Heat exchange, Cyclic process, Averaging, Linear discrete system, Stability, Ergodicity, Inverse problem.
url https://umjuran.ru/index.php/umj/article/view/56
work_keys_str_mv AT abdullaaazamov atexchangeprocessinrotaryregenerativeairpreheater
AT mansurabekimov atexchangeprocessinrotaryregenerativeairpreheater