Modeling and simulation of an Internal Combustion Engine using Hydrogen: A MATLAB implementation approac
Abstract
Keywords
References
- 1. Akal, D., Öztuna, S., & Büyükakın, M. K. (2020). A review of hydrogen usage in internal combustion engines (gasoline-Lpg-diesel) from combustion performance aspect. International Jour-nal of Hydrogen Energy, 45(60), 35257–35268.
- 2. Arslan, T. A. (2023). A Comprehensive Review on Stirling En-gines. Engineering Perspective, 3(3), 42–56.
- 3. Gandhi, R. (2015). Use of Hydrogen in Internal Combustion En-gine. International Journal of Engineering and Technical Research.
- 4. Knorr, H., Held, W., Prûmm, W., & Rûdiger, H. (1998). The man hydrogen propulsion system for city buses. International Journal of Hydrogen Energy, 23(3), 201–208.
- 5. Milojević, S. (2016). Reconstruction of Existing City Buses on Diesel Fuel For Drive on Hydrogen. Applied Engineering Letters, 16–23.
- 6. Karagöz, Y. (2017). EFFECT OF HYDROGEN ADDITION AT DIFFERENT LEVELS ON EMISSIONS AND PERFORMANCE OF A DIESEL ENGINE. Journal of Thermal Engineering, 1780–1790.
- 7. Stępień, Z. (2021). A Comprehensive Overview of Hydrogen-Fueled Internal Combustion Engines: Achievements and Future Challenges. Energies, 14(20), 6504.
- 8. Karakaş, O., Şeker, U. B., & Solmaz, H. (2021). Modeling of an Electric Bus Using MATLAB/Simulink and Determining Cost Saving for a Realistic City Bus Line Driving Cycle. Engineering Perspective, 2(2), 52–62.
Details
Primary Language
English
Subjects
Automotive Combustion and Fuel Engineering
Journal Section
Research Article
Authors
Quang Truc Dam
*
This is me
France
Fatima Haıdar
France
Nour Mama
This is me
France
Sherwin Joy Chennapalli
This is me
France
Publication Date
September 30, 2024
Submission Date
March 4, 2024
Acceptance Date
July 23, 2024
Published in Issue
Year 2024 Volume: 4 Number: 3
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Fırat Üniversitesi Mühendislik Bilimleri Dergisi
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