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Statements

Subject Item
n2:RIV%2F68407700%3A21110%2F09%3A00158552%21RIV10-GA0-21110___
rdf:type
skos:Concept n20:Vysledek
dcterms:description
Exergy analysis allows effective approach for evaluation of recuperative heat exchanger behavior in different operation states that respect 2nd thermodynamic law. This approach is based on exergy definition of heat fluxes transferred between cooled and heated air. Exergy analysis allows including and comparing all heat fluxes on common basis respecting losses caused through irreversible heat transfer processes. As an exchanger's efficiency changes it is necessary to define particular parameters mostly influencing it. In this article is presented advanced approach to our previous method, now containing operation and heat transfer parameters. Transferred heat between air streams relay on operation parameters such as different air volume rates of cooled and heated air and temperatures of air streams at inlets. A heat exchanger itself has specific heat transfer parameters, constant one is an area of heat transfer surface and varying is an overall heat transfer coefficient. Exergy analysis allows effective approach for evaluation of recuperative heat exchanger behavior in different operation states that respect 2nd thermodynamic law. This approach is based on exergy definition of heat fluxes transferred between cooled and heated air. Exergy analysis allows including and comparing all heat fluxes on common basis respecting losses caused through irreversible heat transfer processes. As an exchanger's efficiency changes it is necessary to define particular parameters mostly influencing it. In this article is presented advanced approach to our previous method, now containing operation and heat transfer parameters. Transferred heat between air streams relay on operation parameters such as different air volume rates of cooled and heated air and temperatures of air streams at inlets. A heat exchanger itself has specific heat transfer parameters, constant one is an area of heat transfer surface and varying is an overall heat transfer coefficient.
dcterms:title
Analysis of recuperative heat exchanger based on heat fluxes exergy Analysis of recuperative heat exchanger based on heat fluxes exergy
skos:prefLabel
Analysis of recuperative heat exchanger based on heat fluxes exergy Analysis of recuperative heat exchanger based on heat fluxes exergy
skos:notation
RIV/68407700:21110/09:00158552!RIV10-GA0-21110___
n4:aktivita
n16:P
n4:aktivity
P(GP103/08/P358)
n4:dodaniDat
n13:2010
n4:domaciTvurceVysledku
n15:1490354
n4:druhVysledku
n5:D
n4:duvernostUdaju
n14:S
n4:entitaPredkladatele
n21:predkladatel
n4:idSjednocenehoVysledku
302922
n4:idVysledku
RIV/68407700:21110/09:00158552
n4:jazykVysledku
n19:eng
n4:klicovaSlova
exergy analysis; heat exchanger; recuperation; heat recovery
n4:klicoveSlovo
n12:recuperation n12:exergy%20analysis n12:heat%20exchanger n12:heat%20recovery
n4:kontrolniKodProRIV
[F72365D100D5]
n4:mistoKonaniAkce
Dubrovnik
n4:mistoVydani
Zagreb
n4:nazevZdroje
Book of Abstracts, 5th Dubrovnik Conference on Sustainable Development of Energy, Water and Environment System
n4:obor
n7:JE
n4:pocetDomacichTvurcuVysledku
1
n4:pocetTvurcuVysledku
1
n4:projekt
n9:GP103%2F08%2FP358
n4:rokUplatneniVysledku
n13:2009
n4:tvurceVysledku
Adamovský, Daniel
n4:typAkce
n17:WRD
n4:zahajeniAkce
2009-09-29+02:00
s:numberOfPages
1
n3:hasPublisher
University of Zagreb
n10:isbn
978-953-6313-97-6
n11:organizacniJednotka
21110