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Pregled bibliografske jedinice broj: 1082622

Assessment of radiative heat transfer impact on a temperature distribution inside a real industrial swirled furnace


Jurić, Filip; Vujanović, Milan; Živić, Marija; Holik, Mario; Wang, Xuebin; Duić, Neven
Assessment of radiative heat transfer impact on a temperature distribution inside a real industrial swirled furnace // Thermal science, 24 (2020), 6A; 3663-3672 doi:10.2298/TSCI200407285J (međunarodna recenzija, članak, znanstveni)


CROSBI ID: 1082622 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Assessment of radiative heat transfer impact on a temperature distribution inside a real industrial swirled furnace

Autori
Jurić, Filip ; Vujanović, Milan ; Živić, Marija ; Holik, Mario ; Wang, Xuebin ; Duić, Neven

Izvornik
Thermal science (0354-9836) 24 (2020), 6A; 3663-3672

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
Radiative heat transfer ; Participating media ; Furnace ; Radiative absorption ; Combustion

Sažetak
Combustion systems will continue to share a portion in energy sectors along the current energy transition, and therefore the attention is still given to the further improvements of their energy efficiency. Modern research and development processes of combustion systems are improbable without the usage of predictive numerical tools such as Computational Fluid Dynamics (CFD). The radiative heat transfer in participating media is modelled in this work with Discrete Transfer Radiative Method (DTRM) and Discrete Ordinates Method (DOM) by finite volume discretisation, in order to predict heat transfer inside combustion chamber accurately. DTRM trace the rays in different directions from each face of the generated mesh. At the same time, DOM is described with the angle discretisation, where for each spatial angle the radiative transport equation needs to be solved. In combination with the steady combustion model in AVL FIRE™ CFD code, both models are applied for computation of temperature distribution in a real oil-fired industrial furnace for which the experimental results are available. For calculation of the absorption coefficient in both models weighted sum of grey gasses model is used. The focus of this work is to estimate radiative heat transfer with DTRM and DOM models and to validate obtained results against experimental data and calculations without radiative heat transfer, where approximately 25 % higher temperatures are achieved. The validation results showed good agreement with the experimental data with a better prediction of the DOM model in the temperature trend near the furnace outlet. Both radiation modelling approaches show capability for the computation of radiative heat transfer in participating media on a complex validation case of the combustion process in oil-fired furnace.

Izvorni jezik
Engleski

Znanstvena područja
Strojarstvo



POVEZANOST RADA


Projekti:
MRRFEU-KK.01.1.1.04.0070 - Razvoj sustava za ispitivanje višefaznih strujanja i izgaranja s ciljem povećanja istraživačkih aktivnosti znanstvenog i poslovnog sektora (RESIN) (Vujanović, Milan, MRRFEU - KK.01.1.1.04.) ( CroRIS)

Ustanove:
Fakultet strojarstva i brodogradnje, Zagreb,
Strojarski fakultet, Slavonski Brod

Profili:

Avatar Url Filip Jurić (autor)

Avatar Url Marija Živić (autor)

Avatar Url Neven Duić (autor)

Avatar Url Milan Vujanović (autor)

Avatar Url Mario Holik (autor)

Poveznice na cjeloviti tekst rada:

doi thermalscience.vinca.rs www.doiserbia.nb.rs

Citiraj ovu publikaciju:

Jurić, Filip; Vujanović, Milan; Živić, Marija; Holik, Mario; Wang, Xuebin; Duić, Neven
Assessment of radiative heat transfer impact on a temperature distribution inside a real industrial swirled furnace // Thermal science, 24 (2020), 6A; 3663-3672 doi:10.2298/TSCI200407285J (međunarodna recenzija, članak, znanstveni)
Jurić, F., Vujanović, M., Živić, M., Holik, M., Wang, X. & Duić, N. (2020) Assessment of radiative heat transfer impact on a temperature distribution inside a real industrial swirled furnace. Thermal science, 24 (6A), 3663-3672 doi:10.2298/TSCI200407285J.
@article{article, author = {Juri\'{c}, Filip and Vujanovi\'{c}, Milan and \v{Z}ivi\'{c}, Marija and Holik, Mario and Wang, Xuebin and Dui\'{c}, Neven}, year = {2020}, pages = {3663-3672}, DOI = {10.2298/TSCI200407285J}, keywords = {Radiative heat transfer, Participating media, Furnace, Radiative absorption, Combustion}, journal = {Thermal science}, doi = {10.2298/TSCI200407285J}, volume = {24}, number = {6A}, issn = {0354-9836}, title = {Assessment of radiative heat transfer impact on a temperature distribution inside a real industrial swirled furnace}, keyword = {Radiative heat transfer, Participating media, Furnace, Radiative absorption, Combustion} }
@article{article, author = {Juri\'{c}, Filip and Vujanovi\'{c}, Milan and \v{Z}ivi\'{c}, Marija and Holik, Mario and Wang, Xuebin and Dui\'{c}, Neven}, year = {2020}, pages = {3663-3672}, DOI = {10.2298/TSCI200407285J}, keywords = {Radiative heat transfer, Participating media, Furnace, Radiative absorption, Combustion}, journal = {Thermal science}, doi = {10.2298/TSCI200407285J}, volume = {24}, number = {6A}, issn = {0354-9836}, title = {Assessment of radiative heat transfer impact on a temperature distribution inside a real industrial swirled furnace}, keyword = {Radiative heat transfer, Participating media, Furnace, Radiative absorption, Combustion} }

Časopis indeksira:


  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus


Citati:





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