Abstract

Computational analysis for water management in polymer electrolyte membrane fuel cells (PEFCs) contributes to the effective development of fuel cells. Recently, an improvement in the quality of the computational analysis concerning water management was made possible due to development and modification in both the software and the hardware. In this research, focus is on the water proton synchronized transfer and an experimental study on the relationship between capillary pressure and water saturation. The relationship between the liquid and proton transfer is refined through experimental study and mathematical remodeling, and results show the influence on water removal characteristics.

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