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Pregled bibliografske jedinice broj: 956707

Modelling study on the effect of ash fusion characteristics on the biomass slagging behavior


Zhu, Yiming; Tan, Houzhang; Niu, Yanqing; Wang, Yibin; Mikulčić, Hrvoje; Vujanović, Milan; Duić, Neven
Modelling study on the effect of ash fusion characteristics on the biomass slagging behavior // Thermal science, 22 (2018), 5; 2113-2121 doi:10.2298/tsci171229268z (međunarodna recenzija, članak, znanstveni)


CROSBI ID: 956707 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Modelling study on the effect of ash fusion characteristics on the biomass slagging behavior

Autori
Zhu, Yiming ; Tan, Houzhang ; Niu, Yanqing ; Wang, Yibin ; Mikulčić, Hrvoje ; Vujanović, Milan ; Duić, Neven

Izvornik
Thermal science (0354-9836) 22 (2018), 5; 2113-2121

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

Ključne riječi
biomass combustion ; simulated ash ; ash fusion ; slagging ; computational fluid dynamics modelling

Sažetak
Ash fusion characteristics of biomass have significant effect on slagging. In this work, the effects of ash fusion characteristics on slagging have been studied by ash fusion experiments and computational fluid dynamics modelling. Based on the basic ash composition of biomass, the mixture of silicon dioxide, calcium oxide, potassium oxide and aluminium oxide have been selected as simulated ashes for ash fusion characteristics investigation. The results indicate that deformation temperature decreases with increased potassium oxide. High content of calcium oxide and silicon dioxide increase deformation temperature for the skeleton effect, respectively. The reactions of potassium oxide, calcium oxide and silicon dioxide lead to low melting products and decrease deformation temperature. Aluminium oxide increases deformation temperature by forming Si-Al-K compounds while K content is high and decreases deformation temperature while Ca or Si content is high due to the Si- Al-Ca compounds. On basis of the experimental results, an ash particle adhesion model has been developed using the corresponding characteristic temperatures of adhesion. Combined with the deposition model of inertial impaction, a computational fluid dynamics modelling study of ash deposition on heating surface has been performed. For a kind of cotton straw ash with low melting temperature, the modelling results indicate that adhesion of molten ash plays a major role during slagging. The accretion rate of molten ash adhesion accounts for 85% of the total accretion rate. For a kind of corn straw ash with high melting temperature, the proportion is only 37%. Compared with the actual slagging during biomass combustion, the modelling results can reflect a similar slagging situation on the surface of tube.

Izvorni jezik
Engleski

Znanstvena područja
Strojarstvo



POVEZANOST RADA


Projekti:
MZOS-120-1201918-1920 - Racionalno skladištenje energije za održivi razvoj energetike (Duić, Neven, MZOS ) ( CroRIS)

Ustanove:
Fakultet strojarstva i brodogradnje, Zagreb

Profili:

Avatar Url Neven Duić (autor)

Avatar Url Milan Vujanović (autor)

Avatar Url Hrvoje Mikulčić (autor)

Poveznice na cjeloviti tekst rada:

doi www.doiserbia.nb.rs

Citiraj ovu publikaciju:

Zhu, Yiming; Tan, Houzhang; Niu, Yanqing; Wang, Yibin; Mikulčić, Hrvoje; Vujanović, Milan; Duić, Neven
Modelling study on the effect of ash fusion characteristics on the biomass slagging behavior // Thermal science, 22 (2018), 5; 2113-2121 doi:10.2298/tsci171229268z (međunarodna recenzija, članak, znanstveni)
Zhu, Y., Tan, H., Niu, Y., Wang, Y., Mikulčić, H., Vujanović, M. & Duić, N. (2018) Modelling study on the effect of ash fusion characteristics on the biomass slagging behavior. Thermal science, 22 (5), 2113-2121 doi:10.2298/tsci171229268z.
@article{article, author = {Zhu, Yiming and Tan, Houzhang and Niu, Yanqing and Wang, Yibin and Mikul\v{c}i\'{c}, Hrvoje and Vujanovi\'{c}, Milan and Dui\'{c}, Neven}, year = {2018}, pages = {2113-2121}, DOI = {10.2298/tsci171229268z}, keywords = {biomass combustion, simulated ash, ash fusion, slagging, computational fluid dynamics modelling}, journal = {Thermal science}, doi = {10.2298/tsci171229268z}, volume = {22}, number = {5}, issn = {0354-9836}, title = {Modelling study on the effect of ash fusion characteristics on the biomass slagging behavior}, keyword = {biomass combustion, simulated ash, ash fusion, slagging, computational fluid dynamics modelling} }
@article{article, author = {Zhu, Yiming and Tan, Houzhang and Niu, Yanqing and Wang, Yibin and Mikul\v{c}i\'{c}, Hrvoje and Vujanovi\'{c}, Milan and Dui\'{c}, Neven}, year = {2018}, pages = {2113-2121}, DOI = {10.2298/tsci171229268z}, keywords = {biomass combustion, simulated ash, ash fusion, slagging, computational fluid dynamics modelling}, journal = {Thermal science}, doi = {10.2298/tsci171229268z}, volume = {22}, number = {5}, issn = {0354-9836}, title = {Modelling study on the effect of ash fusion characteristics on the biomass slagging behavior}, keyword = {biomass combustion, simulated ash, ash fusion, slagging, computational fluid dynamics modelling} }

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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