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Mass Transport Enhancement

HEE JOO POH

ISBN 10: 383830165X / ISBN 13: 9783838301655
Published by LAP Lambert Academic Publishing, 2009
New Condition: New Soft cover
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About this Item

296 pages. Dimensions: 8.7in. x 5.9in. x 0.7in.This book presents Computational Fuel Cell Dynamics (CFCD) approaches to analyze the enhanced performance of typical forced convection and self air-breathing PEM fuel cells (ABFC). The mathematical framework used in the simulation is a comprehensive twothree dimensional, multi-component, multiphase, non-isothermal, time-dependent transport computational model, performed using the commercial CFD software (FLUENT 6. 3. 16) with a PEMFC add-on module and self-developed user subroutines. This work seeks to give a better understanding of design for the enhanced performance of PEMFC (both forced convection and air-breathing fuel cells). This requires the optimal combination of improved reactant mass transport for the electrochemical reaction and keeps the right membrane water content for ionic transfer without causing flooding of the gas diffusion layer. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Bookseller Inventory # 9783838301655

Bibliographic Details

Title: Mass Transport Enhancement

Publisher: LAP Lambert Academic Publishing

Publication Date: 2009

Binding: Paperback

Book Condition: New

Book Type: Paperback

About this title

Synopsis:

This book presents Computational Fuel Cell Dynamics (CFCD) approaches to analyze the enhanced performance of typical forced convection and self air-breathing PEM fuel cells (ABFC). The mathematical framework used in the simulation is a comprehensive two/three dimensional, multi-component, multiphase, non-isothermal, time-dependent transport computational model, performed using the commercial CFD software (FLUENT 6.3.16) with a PEMFC add-on module and self-developed user subroutines. This work seeks to give a better understanding of design for the enhanced performance of PEMFC (both forced convection and air-breathing fuel cells). This requires the optimal combination of improved reactant mass transport for the electrochemical reaction and keeps the right membrane water content for ionic transfer without causing flooding of the gas diffusion layer.

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