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Pregled bibliografske jedinice broj: 1015637

Thermodynamic analysis of marine steam power plant pressure reduction valves


Mrzljak, Vedran; Anđelić, Nikola; Poljak, Igor; Orović, Josip
Thermodynamic analysis of marine steam power plant pressure reduction valves // Pomorski zbornik, 56 (2019), 1; 9-30 doi:10.18048/2019.56.01 (međunarodna recenzija, prethodno priopćenje, znanstveni)


CROSBI ID: 1015637 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Thermodynamic analysis of marine steam power plant pressure reduction valves

Autori
Mrzljak, Vedran ; Anđelić, Nikola ; Poljak, Igor ; Orović, Josip

Izvornik
Pomorski zbornik (0554-6397) 56 (2019), 1; 9-30

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, prethodno priopćenje, znanstveni

Ključne riječi
pressure reduction ; valve ; marine steam plant ; thermodynamic analysis ; ambient temperature

Sažetak
The paper presents a thermodynamic analysis of pressure reduction valves from a marine steam power plant that operates on conventional LNG carriers. The analysis refers to six condensate and superheated steam pressure reduction valves. Based on the exploitation data, the calculation involves the energy/exergy flow streams as well as the exergy efficiency and exergy destruction of each pressure reduction valve. The analysis also included the influence of changes in the ambient temperature on the efficiency and destruction of each valve. Total energy and exergy fluid flow streams through each valve showed the same trends. The superheated steam pressure reduction valves showed a lower average exergy destruction rate and higher average exergy efficiency compared with the water/condensate ones. Increase in the ambient temperature resulted in a continuous increase in the exergy destruction rate and a continuous decrease in exergy efficiency in all the observed pressure reduction valves. Pressure reduction valves of high exergy destruction rate and low exergy efficiency are notably influenced by changes in the ambient temperature.

Izvorni jezik
Engleski

Znanstvena područja
Strojarstvo, Tehnologija prometa i transport



POVEZANOST RADA


Projekti:
HRZZ-IP-2018-01-3739 - Sustav potpore odlučivanju za zeleniju i sigurniju plovidbu brodova (DESSERT) (Prpić-Oršić, Jasna, HRZZ - 2018-01) ( CroRIS)

Ustanove:
Tehnički fakultet, Rijeka,
Sveučilište u Zadru

Profili:

Avatar Url Igor Poljak (autor)

Avatar Url Josip Orović (autor)

Avatar Url Nikola Anđelić (autor)

Avatar Url Vedran Mrzljak (autor)

Citiraj ovu publikaciju:

Mrzljak, Vedran; Anđelić, Nikola; Poljak, Igor; Orović, Josip
Thermodynamic analysis of marine steam power plant pressure reduction valves // Pomorski zbornik, 56 (2019), 1; 9-30 doi:10.18048/2019.56.01 (međunarodna recenzija, prethodno priopćenje, znanstveni)
Mrzljak, V., Anđelić, N., Poljak, I. & Orović, J. (2019) Thermodynamic analysis of marine steam power plant pressure reduction valves. Pomorski zbornik, 56 (1), 9-30 doi:10.18048/2019.56.01.
@article{article, author = {Mrzljak, Vedran and An\djeli\'{c}, Nikola and Poljak, Igor and Orovi\'{c}, Josip}, year = {2019}, pages = {9-30}, DOI = {10.18048/2019.56.01}, keywords = {pressure reduction, valve, marine steam plant, thermodynamic analysis, ambient temperature}, journal = {Pomorski zbornik}, doi = {10.18048/2019.56.01}, volume = {56}, number = {1}, issn = {0554-6397}, title = {Thermodynamic analysis of marine steam power plant pressure reduction valves}, keyword = {pressure reduction, valve, marine steam plant, thermodynamic analysis, ambient temperature} }
@article{article, author = {Mrzljak, Vedran and An\djeli\'{c}, Nikola and Poljak, Igor and Orovi\'{c}, Josip}, year = {2019}, pages = {9-30}, DOI = {10.18048/2019.56.01}, keywords = {pressure reduction, valve, marine steam plant, thermodynamic analysis, ambient temperature}, journal = {Pomorski zbornik}, doi = {10.18048/2019.56.01}, volume = {56}, number = {1}, issn = {0554-6397}, title = {Thermodynamic analysis of marine steam power plant pressure reduction valves}, keyword = {pressure reduction, valve, marine steam plant, thermodynamic analysis, ambient temperature} }

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