Measurement of flow maldistribution in parallel channels and its application to ex-situ and in-situ experiments in PEMFC water management studies

被引:117
作者
Kandlikar, S. G. [1 ]
Lu, Z. [1 ]
Domigan, W. E. [1 ]
White, A. D. [1 ]
Benedict, M. W. [1 ]
机构
[1] Rochester Inst Technol, Thermal Anal Microfluid & Fuel Cell Lab, Rochester, NY 14623 USA
关键词
Maldistribution; PEM fuel cell; Gas channels; Instantaneous channel flow rates; MEMBRANE FUEL-CELL; NUMERICAL-SIMULATION; PART I; PLATE; EXCHANGE; CATHODE; FIELD; DISTRIBUTOR; PERFORMANCE; TRANSPORT;
D O I
10.1016/j.ijheatmasstransfer.2008.09.025
中图分类号
O414.1 [热力学];
学科分类号
070201 [理论物理];
摘要
Uniform flow distribution is critical to obtaining high performance in many heat and mass transfer devices. it also plays an important role in the effective operation of a proton exchange membrane fuel cell (PEMFC). Presently there are a few theoretically based models available for predicting flow distribution in individual fuel cell channels and across fuel cell stacks in PEMFCs, but little or no experimental data has been published on the actual flow rates measured in individual channels. This is mainly because of the lack of experimental techniques available to measure the instantaneous flow rates in parallel channels. In this work, a novel technique based on the entrance region pressure drop measurements is presented for monitoring fluid flow maldistribution in individual channels. The method is validated using liquid water flow in a test section with four tubes in parallel, and then applied to assess the air flow maldistribution in PEMFCs using (a) an ex-situ experimental setup simulating the two-phase flow in parallel channels, and (b) an in-situ experimental setup with an operating fuel cell. While an almost uniform air distribution is obtained for the parallel channels with an impermeable backing (plastic sheet), severe maldistribution is observed for the same channels with porous GDL backing. The maldistribution caused by the water blockage in an ex-situ test setup is further investigated and the results are verified by the high-speed images of the two-phase flow in channels. The technique has also been applied in an in-situ experimental setup to obtain the flow maldistribution under electrochemical reaction conditions in the presence of two-phase flow in the cathode side gas channels. (C) 2008 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1741 / 1752
页数:12
相关论文
共 41 条
[1]
Effect of operating parameters on the hygro-thermal stresses in proton exchange membranes of fuel cells [J].
Al-Baghdadi, Maher A. R. Sadiq ;
Al-Janabi, Haroun A. K. Shahad .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2007, 32 (17) :4510-4522
[2]
Numerical simulation of effects of flow maldistribution on heat and mass transfer in a PEM fuel cell stack [J].
Bansode, A. S. ;
Patel, Siddharth ;
Kumar, T. Rajesh ;
Muralidhar, B. ;
Sundararajan, T. ;
Das, Sarit Kumar .
HEAT AND MASS TRANSFER, 2007, 43 (10) :1037-1047
[3]
Flow distribution in a bipolar plate of a proton exchange membrane fuel cell:: experiments and numerical simulation studies [J].
Barreras, F ;
Lozano, A ;
Valiño, L ;
Marín, C ;
Pascau, A .
JOURNAL OF POWER SOURCES, 2005, 144 (01) :54-66
[4]
Fluid dynamics performance of different bipolar plates -: Part I.: Velocity and pressure fields [J].
Barreras, F. ;
Lozano, A. ;
Valino, L. ;
Mustafa, R. ;
Marin, C. .
JOURNAL OF POWER SOURCES, 2008, 175 (02) :841-850
[5]
A quantitative study of the effect of flow-distributor geometry in the cathode of a PEM fuel cell [J].
Birgersson, E ;
Vynnycky, M .
JOURNAL OF POWER SOURCES, 2006, 153 (01) :76-88
[6]
Thermal analysis of plate condensers in presence of flow maldistribution [J].
Bobbili, Prabhakara Rao ;
Sunden, Bengt ;
Das, Sarit Kumar .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2006, 49 (25-26) :4966-4977
[7]
An experimental investigation of the port flow maldistribution in small and large plate package heat exchangers [J].
Bobbili, Prabhakara Rao ;
Sunden, Bengt ;
Das, Sarit K. .
APPLIED THERMAL ENGINEERING, 2006, 26 (16) :1919-1926
[8]
Flow distribution in the manifold of PEM fuel cell stack [J].
Chen, Chung-Hsien ;
Jung, Shiauh-Ping ;
Yen, Shi-Chern .
JOURNAL OF POWER SOURCES, 2007, 173 (01) :249-263
[9]
Quantum jumps in the PEMFC science and technology from the 1960s to the year 2000 Part II. Engineering, technology development and application aspects [J].
Costamagna, P ;
Srinivasan, S .
JOURNAL OF POWER SOURCES, 2001, 102 (1-2) :253-269
[10]
Interaction between the diffusion layer and the flow field of polymer electrolyte fuel cells -: experiments and simulation studies [J].
Dohle, H ;
Jung, R ;
Kimiaie, N ;
Mergel, J ;
Müller, M .
JOURNAL OF POWER SOURCES, 2003, 124 (02) :371-384