TR
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SPECIFIC NET WORK AND MEAN EFFECTIVE PRESSURE BASED THERMODYNAMIC ANALYSIS AND OPTIMIZATION OF IDEAL ATKINSON CYCLE
Abstract
In this study, the criteria for maximum values of specific net work and mean effective pressure in the air standard Atkinson cycle, which is the ideal thermodynamic cycle of internal combustion engines used in hybrid electric vehicles, were examined. For this, it was assumed that the cycle operates in a certain temperature range. Thus, while the maximum temperature of the cycle is constant, the compression ratio was optimized for maximum specific net work and maximum mean effective pressure. A case study was conducted for this study. For the case study, assuming the geometric expansion ratio of 12, the maximum temperature value of the cycle was determined as 1961.923 K. Based on this maximum temperature value, the maximum values of the specific net work and the ambient effective pressure were determined as 580.139 kJ/kg and 373.857 kPa, respectively. In addition, the geometric compression ratios for the maximum values of the specific net work and the ambient effective pressure were determined as 15.462 and 31.063, respectively. Looking at the geometric compression ratio values of today's engines, it was seen that these values were closer to the compression ratio at which the maximum specific net work was achieved. It was observed that the thermal efficiency increased when the compression ratio was optimized for the conditions where the maximum average effective pressure was achieved. The results obtained from this study are particularly attractive to engine designers.
Keywords
References
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Details
Primary Language
English
Subjects
Engineering
Journal Section
Research Article
Publication Date
December 3, 2022
Submission Date
May 23, 2022
Acceptance Date
October 17, 2022
Published in Issue
Year 2022 Volume: 10 Number: 4
APA
Arabacı, E., & Kılıç, B. (2022). SPECIFIC NET WORK AND MEAN EFFECTIVE PRESSURE BASED THERMODYNAMIC ANALYSIS AND OPTIMIZATION OF IDEAL ATKINSON CYCLE. Konya Journal of Engineering Sciences, 10(4), 1035-1047. https://doi.org/10.36306/konjes.1120243
AMA
1.Arabacı E, Kılıç B. SPECIFIC NET WORK AND MEAN EFFECTIVE PRESSURE BASED THERMODYNAMIC ANALYSIS AND OPTIMIZATION OF IDEAL ATKINSON CYCLE. KONJES. 2022;10(4):1035-1047. doi:10.36306/konjes.1120243
Chicago
Arabacı, Emre, and Bayram Kılıç. 2022. “SPECIFIC NET WORK AND MEAN EFFECTIVE PRESSURE BASED THERMODYNAMIC ANALYSIS AND OPTIMIZATION OF IDEAL ATKINSON CYCLE”. Konya Journal of Engineering Sciences 10 (4): 1035-47. https://doi.org/10.36306/konjes.1120243.
EndNote
Arabacı E, Kılıç B (December 1, 2022) SPECIFIC NET WORK AND MEAN EFFECTIVE PRESSURE BASED THERMODYNAMIC ANALYSIS AND OPTIMIZATION OF IDEAL ATKINSON CYCLE. Konya Journal of Engineering Sciences 10 4 1035–1047.
IEEE
[1]E. Arabacı and B. Kılıç, “SPECIFIC NET WORK AND MEAN EFFECTIVE PRESSURE BASED THERMODYNAMIC ANALYSIS AND OPTIMIZATION OF IDEAL ATKINSON CYCLE”, KONJES, vol. 10, no. 4, pp. 1035–1047, Dec. 2022, doi: 10.36306/konjes.1120243.
ISNAD
Arabacı, Emre - Kılıç, Bayram. “SPECIFIC NET WORK AND MEAN EFFECTIVE PRESSURE BASED THERMODYNAMIC ANALYSIS AND OPTIMIZATION OF IDEAL ATKINSON CYCLE”. Konya Journal of Engineering Sciences 10/4 (December 1, 2022): 1035-1047. https://doi.org/10.36306/konjes.1120243.
JAMA
1.Arabacı E, Kılıç B. SPECIFIC NET WORK AND MEAN EFFECTIVE PRESSURE BASED THERMODYNAMIC ANALYSIS AND OPTIMIZATION OF IDEAL ATKINSON CYCLE. KONJES. 2022;10:1035–1047.
MLA
Arabacı, Emre, and Bayram Kılıç. “SPECIFIC NET WORK AND MEAN EFFECTIVE PRESSURE BASED THERMODYNAMIC ANALYSIS AND OPTIMIZATION OF IDEAL ATKINSON CYCLE”. Konya Journal of Engineering Sciences, vol. 10, no. 4, Dec. 2022, pp. 1035-47, doi:10.36306/konjes.1120243.
Vancouver
1.Emre Arabacı, Bayram Kılıç. SPECIFIC NET WORK AND MEAN EFFECTIVE PRESSURE BASED THERMODYNAMIC ANALYSIS AND OPTIMIZATION OF IDEAL ATKINSON CYCLE. KONJES. 2022 Dec. 1;10(4):1035-47. doi:10.36306/konjes.1120243
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