Araştırma Makalesi

Numerical analysis of various combustion chamber bowl geometries on combustion, performance, and emissions parameters in a diesel engine

Cilt: 13 Sayı: 2 30 Haziran 2024
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Numerical analysis of various combustion chamber bowl geometries on combustion, performance, and emissions parameters in a diesel engine

Öz

In this paper, numerical analysis of a diesel engine with various combustion chamber bowl geometries was investigated. Numerical analyses of asymmetrical bowl forms were carried out using the Ansys Forte software. Analyses were done for three different piston bowl geometries in a single-cylinder, air-cooled diesel engine at 1500 rpm engine speed. Three different bowl geometries were created, the piston-1 model is a commercial one for used engine, in the piston-2 pedestal area is removed from the piston, and in the cylindrical model bowl geometry has more straight borders. The results of the numerical study were confirmed with the results of experiments which is carried out for the piston-1 model. Simulation results showed a good correlation with experimental results. According to the results of the numerical study, the highest in-cylinder temperature was determined as 1213 K for the piston-1 model. In the piston-1 model, the combustion efficiency was improved with the increase of the swirl by the increased combustion temperature. As a result of the analysis, the thermal and combustion efficiencies of the piston-1 model were higher than the other models. The maximum turbulence velocity was observed at -12 CA for three different piston bowl models as 4.1 m/s, 4.06 m/s, and 3.9 m/s for piston-1, piston-2, and cylindrical respectively.

Anahtar Kelimeler

Kaynakça

  1. Bawankar, Chetan S., and Rajesh Gupta, "Effects of piston bowl geometry on combustion and emission characteristics on diesel engine: a cfd case study." International Journal of Research in Engineering and Technology, 5, 81-93, 2016.
  2. İhsan Kalay, “Dizel motorlarda piston çanağının incelenmesi”, Yüksek Lisans Tezi, Istanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü, 2011.
  3. İlker Temizer, Ömer Cihan, “Heat and flow analysis of different piston bowl geometries in a diesel engine”, International Journal of Automotive Science and Technology 5 (3), 206-213, 2021.
  4. Ganji, P. R., Singh, R. N., Raju, V. R. K., & Srinivasa Rao, S., “Design of piston bowl geometry for better combustion in direct-injection compression ignition engine.” Sādhanā, 43, 1-9, 2018.
  5. Pham, V. C., Kim, J. K., Lee, W. J., Choe, S. J., Le, V. V., & Choi, J. H., “Effects of piston bowl geometry on combustion and emissions of a four-stroke heavy-duty diesel marine engine.” Applied Sciences, 12(24), 13012, 2022.
  6. Kakaee, A. H., Nasiri-Toosi, A., Partovi, B., & Paykani, A., “Effects of piston bowl geometry on combustion and emissions characteristics of a natural gas/diesel RCCI engine.” Applied Thermal Engineering, 102, 1462-1472, 2016.
  7. Hariharan, D., Rahimi Boldaji, M., Yan, Z., Gainey, B., & Lawler, B., “Exploring the effects of piston bowl geometry and injector included angle on dual-fuel and single-fuel RCCI.” Journal of Engineering for Gas Turbines and Power, 143 (11), 111013, 2021.
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Ayrıntılar

Birincil Dil

İngilizce

Konular

İçten Yanmalı Motorlar

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

30 Haziran 2024

Gönderilme Tarihi

29 Ağustos 2023

Kabul Tarihi

23 Nisan 2024

Yayımlandığı Sayı

Yıl 2024 Cilt: 13 Sayı: 2

Kaynak Göster

APA
Topkaya, H., Işık, M. Z., Çelebi, Y., & Aydın, H. (2024). Numerical analysis of various combustion chamber bowl geometries on combustion, performance, and emissions parameters in a diesel engine. International Journal of Automotive Engineering and Technologies, 13(2), 63-72. https://doi.org/10.18245/ijaet.1351644
AMA
1.Topkaya H, Işık MZ, Çelebi Y, Aydın H. Numerical analysis of various combustion chamber bowl geometries on combustion, performance, and emissions parameters in a diesel engine. International Journal of Automotive Engineering and Technologies. 2024;13(2):63-72. doi:10.18245/ijaet.1351644
Chicago
Topkaya, Hüsna, Mehmet Zerrakki Işık, Yahya Çelebi, ve Hüseyin Aydın. 2024. “Numerical analysis of various combustion chamber bowl geometries on combustion, performance, and emissions parameters in a diesel engine”. International Journal of Automotive Engineering and Technologies 13 (2): 63-72. https://doi.org/10.18245/ijaet.1351644.
EndNote
Topkaya H, Işık MZ, Çelebi Y, Aydın H (01 Haziran 2024) Numerical analysis of various combustion chamber bowl geometries on combustion, performance, and emissions parameters in a diesel engine. International Journal of Automotive Engineering and Technologies 13 2 63–72.
IEEE
[1]H. Topkaya, M. Z. Işık, Y. Çelebi, ve H. Aydın, “Numerical analysis of various combustion chamber bowl geometries on combustion, performance, and emissions parameters in a diesel engine”, International Journal of Automotive Engineering and Technologies, c. 13, sy 2, ss. 63–72, Haz. 2024, doi: 10.18245/ijaet.1351644.
ISNAD
Topkaya, Hüsna - Işık, Mehmet Zerrakki - Çelebi, Yahya - Aydın, Hüseyin. “Numerical analysis of various combustion chamber bowl geometries on combustion, performance, and emissions parameters in a diesel engine”. International Journal of Automotive Engineering and Technologies 13/2 (01 Haziran 2024): 63-72. https://doi.org/10.18245/ijaet.1351644.
JAMA
1.Topkaya H, Işık MZ, Çelebi Y, Aydın H. Numerical analysis of various combustion chamber bowl geometries on combustion, performance, and emissions parameters in a diesel engine. International Journal of Automotive Engineering and Technologies. 2024;13:63–72.
MLA
Topkaya, Hüsna, vd. “Numerical analysis of various combustion chamber bowl geometries on combustion, performance, and emissions parameters in a diesel engine”. International Journal of Automotive Engineering and Technologies, c. 13, sy 2, Haziran 2024, ss. 63-72, doi:10.18245/ijaet.1351644.
Vancouver
1.Hüsna Topkaya, Mehmet Zerrakki Işık, Yahya Çelebi, Hüseyin Aydın. Numerical analysis of various combustion chamber bowl geometries on combustion, performance, and emissions parameters in a diesel engine. International Journal of Automotive Engineering and Technologies. 01 Haziran 2024;13(2):63-72. doi:10.18245/ijaet.1351644

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