EN
A full-scale CFD model of scavenge air inlet temperature on two-stroke marine diesel engine combustion and exhaust emission characteristics
Abstract
Most ships in the maritime transport sector are equipped with large two-stroke marine diesel engines in their propulsion systems. Therefore, ensuring stable and long-term operation of these engines is crucial to maintaining freight transportation. The design of the ship's machinery, particularly the diesel engine, is a crucial step in achieving this goal. Computational Fluid Dynamics (CFD) tools can be used to achieve this goal. This article presents a full-scale CFD study on the effect of different scavenge air inlet temperatures (300, 312, 330 and 340 K) on the combustion process and generation of exhaust emissions in a two-stroke marine diesel engine using ANSYS Forte software. Regarding the cylinder pressure, the presented model agrees well with experimental data. The maximum cylinder pressure decreases as the scavenge air inlet temperature increases, whereas the maximum cylinder temperature increases as the scavenge air inlet temperature increases. The maximum NOX, CO and UHC emission values are calculated to be 2256.5, 20375.8 and 3743.9 ppm, respectively, at a scavenge air inlet temperature of 340 K. Due to the higher combustion temperature caused by the increasing scavenge air inlet temperature, it is observed that the exhaust emission levels increase.
Keywords
Kaynakça
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Ayrıntılar
Birincil Dil
İngilizce
Konular
İçten Yanmalı Motorlar
Bölüm
Araştırma Makalesi
Yayımlanma Tarihi
18 Eylül 2024
Gönderilme Tarihi
9 Nisan 2024
Kabul Tarihi
12 Ağustos 2024
Yayımlandığı Sayı
Yıl 1970 Cilt: 9 Sayı: 3
APA
Pehlivan, E. F., & Altın, İ. (2024). A full-scale CFD model of scavenge air inlet temperature on two-stroke marine diesel engine combustion and exhaust emission characteristics. International Journal of Energy Studies, 9(3), 493-517. https://doi.org/10.58559/ijes.1467215
AMA
1.Pehlivan EF, Altın İ. A full-scale CFD model of scavenge air inlet temperature on two-stroke marine diesel engine combustion and exhaust emission characteristics. International Journal of Energy Studies. 2024;9(3):493-517. doi:10.58559/ijes.1467215
Chicago
Pehlivan, Enes Fatih, ve İsmail Altın. 2024. “A full-scale CFD model of scavenge air inlet temperature on two-stroke marine diesel engine combustion and exhaust emission characteristics”. International Journal of Energy Studies 9 (3): 493-517. https://doi.org/10.58559/ijes.1467215.
EndNote
Pehlivan EF, Altın İ (01 Eylül 2024) A full-scale CFD model of scavenge air inlet temperature on two-stroke marine diesel engine combustion and exhaust emission characteristics. International Journal of Energy Studies 9 3 493–517.
IEEE
[1]E. F. Pehlivan ve İ. Altın, “A full-scale CFD model of scavenge air inlet temperature on two-stroke marine diesel engine combustion and exhaust emission characteristics”, International Journal of Energy Studies, c. 9, sy 3, ss. 493–517, Eyl. 2024, doi: 10.58559/ijes.1467215.
ISNAD
Pehlivan, Enes Fatih - Altın, İsmail. “A full-scale CFD model of scavenge air inlet temperature on two-stroke marine diesel engine combustion and exhaust emission characteristics”. International Journal of Energy Studies 9/3 (01 Eylül 2024): 493-517. https://doi.org/10.58559/ijes.1467215.
JAMA
1.Pehlivan EF, Altın İ. A full-scale CFD model of scavenge air inlet temperature on two-stroke marine diesel engine combustion and exhaust emission characteristics. International Journal of Energy Studies. 2024;9:493–517.
MLA
Pehlivan, Enes Fatih, ve İsmail Altın. “A full-scale CFD model of scavenge air inlet temperature on two-stroke marine diesel engine combustion and exhaust emission characteristics”. International Journal of Energy Studies, c. 9, sy 3, Eylül 2024, ss. 493-17, doi:10.58559/ijes.1467215.
Vancouver
1.Enes Fatih Pehlivan, İsmail Altın. A full-scale CFD model of scavenge air inlet temperature on two-stroke marine diesel engine combustion and exhaust emission characteristics. International Journal of Energy Studies. 01 Eylül 2024;9(3):493-517. doi:10.58559/ijes.1467215
Cited By
Numerical investigation of in-cylinder swirl motion under cold start conditions in a diesel engine
International Journal of Energy Studies
https://doi.org/10.58559/ijes.1632282