Proton Exchange Membrane Fuel Cells Modeling

Proton Exchange Membrane Fuel Cells Modeling

Author
Fei Gao, Benjamin Blunier, Abdellatif Miraoui
Publisher
Wiley-ISTE
Language
English
Edition
1
Year
2012
Page
239
ISBN
978-1-848-21339-5,978-3-527-32711-9,978-1-118-08756-5,978-3-527-33012-6,978-3-527-33041-6,978-3-527-33240-3,978-3-527-69389-4,978-3-527-69391-7,978-3-527-69390-0,978-3-527-69392-4,1848213395
File Type
pdf
File Size
37.6 MiB

The fuel cell is a potential candidate for energy storage and conversion in our future energy mix. It is able to directly convert the chemical energy stored in fuel (e.g. hydrogen) into electricity, without undergoing different intermediary conversion steps. In the field of mobile and stationary applications, it is considered to be one of the future energy solutions.
Among the different fuel cell types, the proton exchange membrane (PEM) fuel cell has shown great potential in mobile applications, due to its low operating temperature, solid-state electrolyte and compactness.
This book presents a detailed state of art of PEM fuel cell modeling, with very detailed physical phenomena equations in different physical domains. Examples and a fully coupled multi-physical 1.2 kW PEMFC model are given help the reader better understand how to use the equations.

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