This content is not included in your SAE MOBILUS subscription, or you are not logged in.
System Level Transient Model of a Fuel Cell System
ISSN: 0148-7191, e-ISSN: 2688-3627
Published April 14, 2008 by SAE International in United States
Annotation ability available
Fuel cell system models are key tools for automotive fuel cell system engineers to properly size components to meet design parameters without compromising efficiency by over-sizing parasitic components. A transient fuel cell system-level model is being developed that includes a simplified transient thermal and parasitics model. Model validation is achieved using a small 1.2 kW fuel cell system due to its availability. While this is a relatively small stack compared to a full size automotive stack, the power, general thermal behavior, and compressor parasitics portions of the model can be scaled to any number of cells with any size membrane area. With flexibility in membrane size and cell numbers, this model can be easily scaled to match full automotive stacks of any size.
The electrochemical model employs a generalized polarization curve to approximate system performance and efficiency parameters needed for the other components of the model. General parameters of a stack's individual cells must be known to scale the stack model. These parameters are usually known by the time system level design begins. The thermal model relies on a lumped capacity approximation of an individual cell system with convective cooling. From the thermal parameters calculated by the model, a designer can effectively size thermal components to remove stack thermal loads. The model provides a useful tool for system level engineers in the early stages of stack system development.
CitationShevock, B. and Nelson, D., "System Level Transient Model of a Fuel Cell System," SAE Technical Paper 2008-01-0636, 2008, https://doi.org/10.4271/2008-01-0636.
- Thirumalai, Dhanwa White E. White “Mathematical Modeling of PEMFC Stacks” Journal of Electrochemistry Society 144 May 1997
- Lee, J.H. Lalk T.R. “Modeling Fuel Cell Stack Systems” Journal of Power Sources 73 June 1998
- Baschuk, J.J. Li Xianguo “A General Formulation for a Mathematical PEM Fuel Cell Model” Journal of Power Sources 142 March 2