The mass flow distribution and local flow structures that lead to areas of reactant starvation are explored for a small power large active area PEM fuel cell. A numerical model was created to examine the flow distribution for three different inlet profiles; blunt, partially developed, and fully developed. The different inlet profiles represent the various distances between the blower and the inlet to the fuel cell and the state of flow development. The partially and fully developed inlet profiles were found to have the largest percentage of cells that are deficient, 20% at a flow rate of 6.05 g/s. Three different inlet mass flow rates (stoichs) were also examined for each inlet profile. The largest percent of cells deficient in reactants is 27% and occurs at the highest flow rate of 9.1 g/s (3 stoichs) for the partially and fully developed turbulent profiles. In addition to the uneven flow distribution, flow separation occurs in the front four channels for the blunt inlet profile at all flow rates examined. These areas of flow separation lead to localized reactant deficient areas within a channel.

1.
Appleby
,
A. J.
, and
Foulkes
,
F. R.
,
Fuel Cell Handbook
,
Krieger
, Malabar, Fl., 1992.
2.
Costamagna
,
P.
,
Arato
,
E.
,
Achenbach
,
E.
, and
Reus
,
U.
, 1994, “
Fluid Dynamic Study of Fuel Cell Devices: Simulation and Experimental Validation
,”
J. Power Sources
0378-7753,
52
, pp.
243
249
.
3.
Boersma
,
R. J.
, and
Sammes
,
N. M.
, 1997, “
Distribution of Gas Flow in Internally Manifolded Solid Oxide Fuel-Cell Stacks
,”
J. Power Sources
0378-7753,
66
, pp.
41
45
.
4.
Koh
,
Joon-Ho
,
Seo
,
Hai-Kyung
,
Lee
,
Chong Gon
,
Yoo
,
Young-Sung
, and
Lim
,
Hee Chun
, 2002, “
Pressure and Flow Distribution in Internal Gas Manifolds of a Fuel-Cell Stack
,”
J. Power Sources
0378-7753,
115
, pp.
54
65
.
5.
Ma
,
Zhiwen
,
Shelton
,
Jeter
, and
Said
,
Abdel-Khalik
, 2002, “
Flow Network Anaylsis Application in a Fuel Cell
,”
J. Power Sources
0378-7753,
108
, pp.
106
112
.
6.
Mohan
,
Ganesh
,
Rao
,
B. P.
,
Das
,
S. K.
,
Pandiyan
,
S.
,
Rajalakshmi
,
N.
, and
Dhathathreyan
,
K. S.
, 2004, “
Analysis of Flow Maldistribution of Fuel and Oxidant in a PEMFC
,”
J. Energy Resour. Technol.
0195-0738,
126
, pp.
262
270
.
7.
Ma
,
Zhiwen
,
Venkataraman
,
Ramki
, and
Farooque
,
Mohammad
, 2004, “
Study of the Gas Flow Distribution and Heat Transfer for Externally Manifolded Fuel Cell Stack Module Using Computational Fluid Dynamics Method
,”
Rec. Electr. Commun. Eng. Conversazione Tokohu Univ.
0385-7719,
1
, pp.
49
55
.
8.
White
,
Frank M.
,
Viscous Fluid Flow
,
McGraw-Hill
, Boston, MA, 1991.
You do not currently have access to this content.