Research Article

Modeling and Simulation of Integrated Photovoltaic-Alkaline Electrolyzer System for Sustainable Hydrogen Production

Volume: 4 Number: 2 June 30, 2024
EN

Modeling and Simulation of Integrated Photovoltaic-Alkaline Electrolyzer System for Sustainable Hydrogen Production

Abstract

In this research, the integration of an alkaline electrolyzer system with a photovoltaic (PV) array is explored to facilitate the green production of hydrogen. By directly coupling these two technologies, solar energy is harnessed to drive the electrolysis process, consequently generating hydrogen as a sustainable energy carrier. To enable accurate simulation and analysis of the integrated system, a novel methodology is introduced for identifying and quantifying the various parameters crucial for understanding the electrical behavior of the alkaline electrolyzer system. Through this method, the interplay between the PV array's output and the electrolyzer's operation can be comprehensively captured, allowing for precise modeling of the overall system dynamics. Moreover, mathematical equations are established to provide insights into the anticipated quantities of hydrogen generated by the electrolyzer system under different operating conditions. These equations serve as predictive tools, offering valuable insights into the system's performance and efficiency, essential for optimizing its design and operation. The proposed methodology and equations are implemented and validated using the MATLAB/Simulink environment, a powerful tool for simulating complex systems. By leveraging this platform, the integrated PV-electrolyzer system can be simulated with high fidelity, capturing its dynamic behavior and performance characteristics under varying scenarios. The promotion of renewable energy-based solutions for sustainable hydrogen production is aimed to be facilitated by this research, thereby contributing to the transition towards a greener and more resilient energy future.

Keywords

References

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  3. 3. Kiaee, M., Cruden, A., Chladek, P., & Infield, D. (2015). Demonstration of the operation and performance of a pressurised alkaline electrolyser operating in the hydrogen fuelling station in Porsgrunn, Norway. Energy Conversion and Management, 94, 40–50.
  4. 4. Kamal, T., & Hassan, S. Z. (2016). Energy Management and Simulation of Photovoltaic/Hydrogen/Battery Hybrid Power Sys-tem. Advances in Science, Technology and Engineering Systems Journal, 1(2), 11–18.
  5. 5. Awad, H., Abdalfatah, S., Hegazy, H., & Elkholy, E. E. (2019). Hybrid PV/FC System Design and Simulation. 2019 21st Interna-tional Middle East Power Systems Conference (MEPCON), 1025–1030.
  6. 6. Zhou, T., & Francois, B. (2009). Modeling and control design of hydrogen production process for an active hydrogen/wind hybrid power system. International Journal of Hydrogen Energy, 34(1), 21–30.
  7. 7. Saeed, Eng. W., & Warkozek, Eng. G. (2015). Modeling and Analysis of Renewable PEM Fuel Cell System. Energy Procedia, 74, 87–101.
  8. 8. Awasthi, A., Scott, K., & Basu, S. (2011). Dynamic modeling and simulation of a proton exchange membrane electrolyzer for hy-drogen production. International Journal of Hydrogen Energy, 36(22), 14779–14786.

Details

Primary Language

English

Subjects

Electrochemical Energy Storage and Conversion, Chemical and Thermal Processes in Energy and Combustion

Journal Section

Research Article

Authors

Quang Truc Dam This is me
France

Publication Date

June 30, 2024

Submission Date

January 15, 2024

Acceptance Date

May 3, 2024

Published in Issue

Year 2024 Volume: 4 Number: 2

APA
Haıdar, F., Mrad, I., & Dam, Q. T. (2024). Modeling and Simulation of Integrated Photovoltaic-Alkaline Electrolyzer System for Sustainable Hydrogen Production. Engineering Perspective, 4(2), 60-68. https://doi.org/10.29228/eng.pers.76380
AMA
1.Haıdar F, Mrad I, Dam QT. Modeling and Simulation of Integrated Photovoltaic-Alkaline Electrolyzer System for Sustainable Hydrogen Production. engineeringperspective. 2024;4(2):60-68. doi:10.29228/eng.pers.76380
Chicago
Haıdar, Fatima, Imen Mrad, and Quang Truc Dam. 2024. “Modeling and Simulation of Integrated Photovoltaic-Alkaline Electrolyzer System for Sustainable Hydrogen Production”. Engineering Perspective 4 (2): 60-68. https://doi.org/10.29228/eng.pers.76380.
EndNote
Haıdar F, Mrad I, Dam QT (June 1, 2024) Modeling and Simulation of Integrated Photovoltaic-Alkaline Electrolyzer System for Sustainable Hydrogen Production. Engineering Perspective 4 2 60–68.
IEEE
[1]F. Haıdar, I. Mrad, and Q. T. Dam, “Modeling and Simulation of Integrated Photovoltaic-Alkaline Electrolyzer System for Sustainable Hydrogen Production”, engineeringperspective, vol. 4, no. 2, pp. 60–68, June 2024, doi: 10.29228/eng.pers.76380.
ISNAD
Haıdar, Fatima - Mrad, Imen - Dam, Quang Truc. “Modeling and Simulation of Integrated Photovoltaic-Alkaline Electrolyzer System for Sustainable Hydrogen Production”. Engineering Perspective 4/2 (June 1, 2024): 60-68. https://doi.org/10.29228/eng.pers.76380.
JAMA
1.Haıdar F, Mrad I, Dam QT. Modeling and Simulation of Integrated Photovoltaic-Alkaline Electrolyzer System for Sustainable Hydrogen Production. engineeringperspective. 2024;4:60–68.
MLA
Haıdar, Fatima, et al. “Modeling and Simulation of Integrated Photovoltaic-Alkaline Electrolyzer System for Sustainable Hydrogen Production”. Engineering Perspective, vol. 4, no. 2, June 2024, pp. 60-68, doi:10.29228/eng.pers.76380.
Vancouver
1.Fatima Haıdar, Imen Mrad, Quang Truc Dam. Modeling and Simulation of Integrated Photovoltaic-Alkaline Electrolyzer System for Sustainable Hydrogen Production. engineeringperspective. 2024 Jun. 1;4(2):60-8. doi:10.29228/eng.pers.76380

Cited By

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