
PEM Fuel Cell Modeling and Simulation Using Matlab
PEM Fuel Cell
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Product details:
- Publisher Academic Press
- Date of Publication 18 June 2008
- ISBN 9780123742599
- Binding Hardback
- No. of pages456 pages
- Size 228x152 mm
- Weight 720 g
- Language English
- Illustrations Approx. 100 illustrations 0
Categories
Short description:
Provides design engineers and researchers with a tool for understanding and overcoming barriers to designing and building the next generation of PEM Fuel Cells. This book includes design advice and MATLAB and FEMLAB codes for Fuel Cell types such as: polymer electrolyte, direct methanol and solid oxide fuel cells.
MoreLong description:
Although, the basic concept of a fuel cell is quite simple, creating new designs and optimizing their performance takes serious work and a mastery of several technical areas. PEM Fuel Cell Modeling and Simulation Using Matlab, provides design engineers and researchers with a valuable tool for understanding and overcoming barriers to designing and building the next generation of PEM Fuel Cells. With this book, engineers can test components and verify designs in the development phase, saving both time and money.Easy to read and understand, this book provides design and modelling tips for fuel cell components such as: modelling proton exchange structure, catalyst layers, gas diffusion, fuel distribution structures, fuel cell stacks and fuel cell plant. This book includes design advice and MATLAB and FEMLAB codes for Fuel Cell types such as: polymer electrolyte, direct methanol and solid oxide fuel cells. This book also includes types for one, two and three dimensional modeling and two-phase flow phenomena and microfluidics.
MoreTable of Contents:
1. Introduction2. Fuel Cell Thermodynamics3. Fuel Cell Electrochemistry4. Fuel Cell Charge Transport5. Fuel Cell Mass Transport6. Fuel Cell Energy Balances7. Modeling the Proton Exchange Structure8. Modeling the Catalyst Layers9. Modeling the Gas Diffusion Layers10. Modeling the Fuel Distribution Structures11. Modeling Micro Fuel Cells12. Modeling Fuel Cell Stacks 13. Modeling the Fuel Cell Plant 14. Model Validation
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