학술논문

Computational Fluid Dynamic simulation and modelling (CFX) of flow plate in PEM fuel cell using aluminum open cellular foam material
Document Type
Conference
Source
2017 IEEE Texas Power and Energy Conference (TPEC) Power and Energy Conference (TPEC), IEEE Texas. :1-6 Feb, 2017
Subject
Power, Energy and Industry Applications
Fuel cells
Anodes
Computational fluid dynamics
Hydrogen
Computational modeling
Protons
Fuels
Fuel cell
Computational Fluid Dynamic Ansys Software
Membrane Electrode Assembly
Bipolar Plate
Open Pore Cellular Foam Material (OPCFM)
Language
Abstract
This paper reports the design and development of a Proton Exchange Membrane (PEM) fuel cell using Aluminum open pore cellular metal foam as the flow plate material. Effective housing designs are proposed for both hydrogen and oxygen sides and through the application of Computational Fluid Dynamic (CFD) modelling and analysis techniques, the flow regime through the open pore cellular metal foam flow plate are identified. Based on the CFD results, the best anode housing design was selected. The fuel cell was then modelled and the findings are reported. The results obtained showed that using the open pore cellular foam material for the modelled fuel cell was more efficient compared to the traditional types of fuel cell in literature.