Research Article

Modeling and simulation of an Internal Combustion Engine using Hydrogen: A MATLAB implementation approac

Volume: 4 Number: 3 September 30, 2024

Modeling and simulation of an Internal Combustion Engine using Hydrogen: A MATLAB implementation approac

Abstract

In response to the escalating global demand for energy spurred by industrialization, nations are increasingly turning to alternative fuel sources. Among these alternatives, hydrogen stands out for its remarkable efficiency and environmental benefits. With its potential to significantly reduce fuel consumption and air pollution, particularly in the transportation sector, hydrogen has garnered widespread attention as a promising solution to our energy challenges. This study focuses on the development of a dynamic model for an internal combustion engine powered by hydrogen (H2-ICE). By intricately dissecting and modeling the various components of the engine and their interactions, we aim to create a comprehensive simulation platform. This platform will enable us to accurately predict and analyze the performance of H2-ICE under different operating conditions. Through the utilization of advanced simulation tools like Matlab Simulink, we can validate the efficacy and reliability of our model, providing valuable insights in-to the behaviour of hydrogen-powered engines. Furthermore, the implications of this research extend beyond mere simulation. The developed model opens up avenues for further exploration and innovation in the field of hydrogen propulsion. For instance, it lays the groundwork for the development of sophisticated control systems tailored specifically for H2-ICE applications. Additionally, the effectiveness of the proposed model in terms of air intake dynamics, pressure, temperature, fuel injection response, combustion efficiency, and overall engine performance, such as power output, torque, and engine velocity are illustrated through simulation results using Matlab Simulink.

Keywords

References

  1. 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. 2. Arslan, T. A. (2023). A Comprehensive Review on Stirling En-gines. Engineering Perspective, 3(3), 42–56.
  3. 3. Gandhi, R. (2015). Use of Hydrogen in Internal Combustion En-gine. International Journal of Engineering and Technical Research.
  4. 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. 5. Milojević, S. (2016). Reconstruction of Existing City Buses on Diesel Fuel For Drive on Hydrogen. Applied Engineering Letters, 16–23.
  6. 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. 7. Stępień, Z. (2021). A Comprehensive Overview of Hydrogen-Fueled Internal Combustion Engines: Achievements and Future Challenges. Energies, 14(20), 6504.
  8. 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

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

APA
Dam, Q. T., Haıdar, F., Mama, N., & Chennapalli, S. J. (2024). Modeling and simulation of an Internal Combustion Engine using Hydrogen: A MATLAB implementation approac. Engineering Perspective, 4(3), 108-118. https://doi.org/10.29228/eng.pers.76219
AMA
1.Dam QT, Haıdar F, Mama N, Chennapalli SJ. Modeling and simulation of an Internal Combustion Engine using Hydrogen: A MATLAB implementation approac. engineeringperspective. 2024;4(3):108-118. doi:10.29228/eng.pers.76219
Chicago
Dam, Quang Truc, Fatima Haıdar, Nour Mama, and Sherwin Joy Chennapalli. 2024. “Modeling and Simulation of an Internal Combustion Engine Using Hydrogen: A MATLAB Implementation Approac”. Engineering Perspective 4 (3): 108-18. https://doi.org/10.29228/eng.pers.76219.
EndNote
Dam QT, Haıdar F, Mama N, Chennapalli SJ (September 1, 2024) Modeling and simulation of an Internal Combustion Engine using Hydrogen: A MATLAB implementation approac. Engineering Perspective 4 3 108–118.
IEEE
[1]Q. T. Dam, F. Haıdar, N. Mama, and S. J. Chennapalli, “Modeling and simulation of an Internal Combustion Engine using Hydrogen: A MATLAB implementation approac”, engineeringperspective, vol. 4, no. 3, pp. 108–118, Sept. 2024, doi: 10.29228/eng.pers.76219.
ISNAD
Dam, Quang Truc - Haıdar, Fatima - Mama, Nour - Chennapalli, Sherwin Joy. “Modeling and Simulation of an Internal Combustion Engine Using Hydrogen: A MATLAB Implementation Approac”. Engineering Perspective 4/3 (September 1, 2024): 108-118. https://doi.org/10.29228/eng.pers.76219.
JAMA
1.Dam QT, Haıdar F, Mama N, Chennapalli SJ. Modeling and simulation of an Internal Combustion Engine using Hydrogen: A MATLAB implementation approac. engineeringperspective. 2024;4:108–118.
MLA
Dam, Quang Truc, et al. “Modeling and Simulation of an Internal Combustion Engine Using Hydrogen: A MATLAB Implementation Approac”. Engineering Perspective, vol. 4, no. 3, Sept. 2024, pp. 108-1, doi:10.29228/eng.pers.76219.
Vancouver
1.Quang Truc Dam, Fatima Haıdar, Nour Mama, Sherwin Joy Chennapalli. Modeling and simulation of an Internal Combustion Engine using Hydrogen: A MATLAB implementation approac. engineeringperspective. 2024 Sep. 1;4(3):108-1. doi:10.29228/eng.pers.76219

Cited By

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