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- W4313535095 endingPage "232585" @default.
- W4313535095 startingPage "232585" @default.
- W4313535095 abstract "Water management and thermal management are essential for the design and operation of low-temperature proton-exchange membrane fuel cells and demand a deep understanding of the fuel cell system behaviour. System-level studies require fast and simple numerical models, a challenge given the complexity of the transport phenomena involved. Numerous models exist in the literature, with different levels of complexity and different hypotheses aiming at simplifying the representation of transport phenomena. This review summarizes different hypotheses and modelling approaches adopted in low computational cost physics-based proton-exchange membrane fuel cell models, with a focus on aspects related to water and thermal management. It also describes modelling approaches for auxiliary system components, validation practices and compare the computational efficiency of different models. We put in evidence the high diversity of hypotheses and modelling approaches adopted in the literature, which reflect the trade-off between computational cost, model complexity and accuracy. We conclude that rather than developing new models from scratch, a strong effort on the validation of the existing models is needed, with the development of a standard validation procedure." @default.
- W4313535095 created "2023-01-06" @default.
- W4313535095 creator A5057221020 @default.
- W4313535095 date "2023-02-01" @default.
- W4313535095 modified "2023-09-25" @default.
- W4313535095 title "A review of physics-based low-temperature proton-exchange membrane fuel cell models for system-level water and thermal management studies" @default.
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