Modeling the Operational Dynamics of Alkaline Electrolyzer

Mohammed Ali Khan*, Mohammad Sadegh Golsorkhi, Thomas Ebel

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingArticle in proceedingsResearchpeer-review

Abstract

The performance and optimization of alkaline electrolyzers are often constrained by the lack of comprehensive models that capture their dynamic behavior under varying operational conditions. Existing models frequently overlook the complex interactions between electrochemical, thermodynamic, and pressure systems within the electrolyzer. This paper presents an intelligent, multi-physics dynamic modeling approach for an alkaline electrolyzer. The proposed model captures the electrochemical, thermodynamic, and pressure dynamics of the electrolyzer, simulating its behavior under various operating conditions. The model operates within a closed-loop environment, accounting for key factors such as temperature and pressure variations during operation. The comprehensive modeling approach aims to capture the dynamic behavior of the electrolyzer, including startup conditions, ensuring optimized performance across a range of operating scenarios. The model has been implemented in MATLAB/Simulink, providing enhanced control capabilities. Additionally, the accuracy and performance of the model have been validated against experimental data, demonstrating its reliability.
Original languageEnglish
Title of host publication2024 IEEE Design Methodologies Conference (DMC)
Number of pages6
PublisherIEEE
Publication dateNov 2024
ISBN (Electronic)9798350355864
DOIs
Publication statusPublished - Nov 2024
EventDesign Methodologies Conference - University of Grenoble Alpes, Grenoble, France
Duration: 18. Nov 202420. Nov 2024
https://attend.ieee.org/dmc-2024/

Conference

ConferenceDesign Methodologies Conference
LocationUniversity of Grenoble Alpes
Country/TerritoryFrance
CityGrenoble
Period18/11/202420/11/2024
Internet address

Keywords

  • Electrolyzer
  • Modelling
  • multiphysics models
  • Intelligent Model

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