Eduardo Gonzalez Osuna eduardo.e.gonzalez-osuna@durham.ac.uk
PGR Student Doctor of Philosophy
Eduardo Gonzalez Osuna eduardo.e.gonzalez-osuna@durham.ac.uk
PGR Student Doctor of Philosophy
Martha Correa Delval martha.t.correa-delval@durham.ac.uk
Research Software Engineer
Professor Hongjian Sun hongjian.sun@durham.ac.uk
Professor
This paper presents an analysis of an integrated power-hydrogen system for an energy community, incorporating renewable energy sources as solar panels, battery storage, and grid interaction. This study focuses on optimising energy consumption and minimising CO2 emissions. Genetic algorithm techniques are implemented to find the optimal values for various parameters in the system such as battery usage and grid utilisation. The analysis considers power and heating loads, with renewable energy sources meeting the power load and surplus energy used to produce hydrogen. The findings highlight the potential of integrated power-to-hydrogen systems for decarbonising small communities.
Gonzalez-Osuna, E., Correa-Delval, M., & Sun, H. (2024, November). Decarbonising Heating with Power-Hydrogen Optimisation. Presented at 9th International Conference on Renewable Energy and Conservation ICREC 2024, Rome, Italy
Presentation Conference Type | Conference Paper (published) |
---|---|
Conference Name | 9th International Conference on Renewable Energy and Conservation ICREC 2024 |
Start Date | Nov 22, 2024 |
End Date | Nov 24, 2024 |
Acceptance Date | Nov 14, 2024 |
Deposit Date | Dec 12, 2024 |
Publisher | Springer |
Peer Reviewed | Peer Reviewed |
Series Title | Green Energy and Technology |
Series ISSN | 1865-3537 |
Public URL | https://durham-repository.worktribe.com/output/3216526 |
Publisher URL | https://www.springer.com/series/8059?srsltid=AfmBOor3kfB0O2QqMFXOwmJLx_NXQ5QzEUN-KbPsQGWTwEY1oesgg0xr |
This file is under embargo due to copyright reasons.
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