EN
Experimental Investigation of Intake Manifold Design Effect on Diesel Engine Performance
Abstract
Intake port geometry is the most significant parameter for air supply of engines into combustion space. Especially because only air is supplied into combustion spaces of diesel engines and the fuel is sprayed over the air, intake port geometry should form a specific horizontal turbulence ratio in formation of fuel-air mixture. In this study, the impact of cylinder heads of intake port of a single cylinder compression ignition engine produced with 3 different geometries on performance and emissions of the engine was analysed experimentally. Additionally, the impact of intake port geometry produced with old and new moulds on 3 different geometries was researched. As a result of the study; power, torque, specific fuel consumption, exhaust gas temperatures, intake air flow and soot emission were measured. It was found out that the different intake port designs had impact on performance parameters, specific fuel consumption and soot emission following the study. Moreover, it was shown that the change of intake port didn’t have any impact on the flow of the air intake in low speed. It was observed that the cylinder heads produced with old and new mould cores had a significant impact. It is predicted that the main reason for the poor performance of the port geometry, which is called Y-type and creates a wider auger around the intake valve, may be due to the low turbulence intensity it creates in the cylinder. X and Z type ports gave better results by about 15% in power and torque values. Z type intake port gave the best performance in terms of exhaust gas temperature and soot emission.
Keywords
References
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Details
Primary Language
English
Subjects
Mechanical Engineering
Journal Section
Research Article
Publication Date
June 30, 2022
Submission Date
April 25, 2022
Acceptance Date
May 28, 2022
Published in Issue
Year 2022 Volume: 6 Number: 2
APA
Demir, Ü., Çetinkaya, O., Türkmen, A. C., & Çelik, D. D. C. (2022). Experimental Investigation of Intake Manifold Design Effect on Diesel Engine Performance. International Journal of Automotive Science And Technology, 6(2), 127-134. https://doi.org/10.30939/ijastech..1108430
AMA
1.Demir Ü, Çetinkaya O, Türkmen AC, Çelik DDC. Experimental Investigation of Intake Manifold Design Effect on Diesel Engine Performance. IJASTECH. 2022;6(2):127-134. doi:10.30939/ijastech.1108430
Chicago
Demir, Üsame, Ozan Çetinkaya, Anil Can Türkmen, and Doç. Dr. Cenk Çelik. 2022. “Experimental Investigation of Intake Manifold Design Effect on Diesel Engine Performance”. International Journal of Automotive Science And Technology 6 (2): 127-34. https://doi.org/10.30939/ijastech. 1108430.
EndNote
Demir Ü, Çetinkaya O, Türkmen AC, Çelik DDC (June 1, 2022) Experimental Investigation of Intake Manifold Design Effect on Diesel Engine Performance. International Journal of Automotive Science And Technology 6 2 127–134.
IEEE
[1]Ü. Demir, O. Çetinkaya, A. C. Türkmen, and D. D. C. Çelik, “Experimental Investigation of Intake Manifold Design Effect on Diesel Engine Performance”, IJASTECH, vol. 6, no. 2, pp. 127–134, June 2022, doi: 10.30939/ijastech..1108430.
ISNAD
Demir, Üsame - Çetinkaya, Ozan - Türkmen, Anil Can - Çelik, Doç. Dr. Cenk. “Experimental Investigation of Intake Manifold Design Effect on Diesel Engine Performance”. International Journal of Automotive Science And Technology 6/2 (June 1, 2022): 127-134. https://doi.org/10.30939/ijastech. 1108430.
JAMA
1.Demir Ü, Çetinkaya O, Türkmen AC, Çelik DDC. Experimental Investigation of Intake Manifold Design Effect on Diesel Engine Performance. IJASTECH. 2022;6:127–134.
MLA
Demir, Üsame, et al. “Experimental Investigation of Intake Manifold Design Effect on Diesel Engine Performance”. International Journal of Automotive Science And Technology, vol. 6, no. 2, June 2022, pp. 127-34, doi:10.30939/ijastech. 1108430.
Vancouver
1.Üsame Demir, Ozan Çetinkaya, Anil Can Türkmen, Doç. Dr. Cenk Çelik. Experimental Investigation of Intake Manifold Design Effect on Diesel Engine Performance. IJASTECH. 2022 Jun. 1;6(2):127-34. doi:10.30939/ijastech. 1108430
