Modeling and Simulation of Integrated Photovoltaic-Alkaline Electrolyzer System for Sustainable Hydrogen Production
Abstract
Keywords
References
- 1. Aouali, F. Z., Becherif, M., Tabanjat, A., Emziane, M., Moham-medi, K., Krehi, S., & Khellaf, A. (2014). Modelling and Experi-mental Analysis of a PEM Electrolyser Powered by a Solar Pho-tovoltaic Panel. Energy Procedia, 62, 714–722.
- 2. Hervello, M., Alfonsín, V., Sánchez, Á., Cancela, Á., & Rey, G. (2014). Simulation of a stand-alone renewable hydrogen system for residential supply. DYNA, 81(185), 116.
- 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. 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. 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. 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. Saeed, Eng. W., & Warkozek, Eng. G. (2015). Modeling and Analysis of Renewable PEM Fuel Cell System. Energy Procedia, 74, 87–101.
- 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
Publication Date
June 30, 2024
Submission Date
January 15, 2024
Acceptance Date
May 3, 2024
Published in Issue
Year 2024 Volume: 4 Number: 2
Cited By
Impact of acetone-butanol-ethanol ternary fuel on combustion and emissions in a low-temperature combustion engine with variable compression ratio
Energy Conversion and Management
https://doi.org/10.1016/j.enconman.2025.120194Investigation of the Effect of TiO2 Nanoparticles on Engine Performance and Emission Characteristics in Diesel Engines
International Journal of Automotive Science And Technology
https://doi.org/10.30939/ijastech..1478380A new nanocomposite membrane based on sulfonated polysulfone boron nitride for proton exchange membrane fuel cells: Its fabrication and characterization
Fuel
https://doi.org/10.1016/j.fuel.2024.132476Design and Optimization of the Turkish Green Supergrid: Multi-Commodity Network Planning from Altai to the Danube
Engineering Perspective
https://doi.org/10.64808/engineeringperspective.1839385Energy-exergy analysis of butanone-gasoline blends with hybrid nanoparticles in a spark ignition engine
Case Studies in Thermal Engineering
https://doi.org/10.1016/j.csite.2025.106597