Study of the Gas Flow Distribution and Heat Transfer for Externally Manifolded Fuel Cell Stack Module Using Computational Fluid Dynamics Method

Author:

Ma Zhiwen1,Venkataraman Ramki1,Farooque Mohammad1

Affiliation:

1. Fuel Cell Energy, 3 Great Pasture Road, Danbury, CT 06813

Abstract

Uniform gas flow distribution in a fuel cell system is desired to attain maximum power operation potential. Two types of manifold systems are often used in fuel cell stacks; they are internal manifold system and external manifold system. This paper presents the modeling approach using the Computational Fluid Dynamics (CFD) method in analyzing fluid flow and heat transfer for the external manifold fuel cell stacks and stack module design. Computational models based on a Megawatt carbonate fuel cell stack module have been developed for investigating the fuel and oxidant flow distributions through the external manifold systems. This paper presents the modeling approaches and flow and temperature distribution results for externally manifolded fuel cell stack and stack module.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials

Reference6 articles.

1. Gas-Flow Uniformity and Cell Performance in a Molten Carbonate Fuel Cell Stack;Hirata;J. Power Sources

2. Development, and Demonstration of Molten Carbonate Fuel Cell Systems;Selman

3. Flow Network Analysis Application in Fuel Cell;Ma;J. Power Sources

4. Modeling the Transport Processes Within Multichannel Molten Carbonate Fuel Cells;Ma;Int. J. Hydrogen Energy

5. Wilcox, D. C. , 1993, Turbulence Modeling for CFD, DCW Industries, CA.

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