多物理
可再生能源
碱性水电解
MATLAB语言
计算机科学
工艺工程
电解
核工程
化学
工程类
热力学
电气工程
物理
有限元法
操作系统
物理化学
电解质
电极
作者
Álvaro Iribarren,David Elizondo,Ernesto L. Barrios,Harkaitz Ibaiondo,Alain Sanchez-Ruiz,Joseba Arza,Pablo Sanchis,Alfredo Ursúa
标识
DOI:10.1109/tia.2023.3247405
摘要
In this paper a dynamic model for the simulation of pressurized alkaline water electrolyzers is presented. The model has been developed following a multiphysics approach, integrating electrochemical, thermodynamic, heat transfer and gas evolution processes in order to faithfully reproduce the complete dynamical behavior of these systems. The model has been implemented on MATLAB/Simulink and validated through experimental data from a 1 Nm 3 /h commercial alkaline water electrolyzer. Validations have been performed under real scenarios where the electrolyzer is working with power profiles characteristic from renewable sources, wind and photovoltaic. The simulated results have been found to be consistent with the real measured values. This model has a great potential to predict the behavior of alkaline water electrolyzers coupled with renewable energy sources, making it a very useful tool for designing efficient green hydrogen production systems.
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