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Degradation pattern prediction of a polymer electrolyte membrane fuel cell stack with series reliability structure via durability data of single cells

Authors
Bae, Suk JooKim, Seong-JoonLee, Jin-HwaSong, InseobKim, Nam-InSeo, YonghoKim, Ki BuemLee, NaesungPark, Jun-Young
Issue Date
Oct-2014
Publisher
Pergamon Press Ltd.
Keywords
Accelerated degradation test; Polymer electrolyte membrane fuel cell; Stack; Series reliability structure; Weibull distribution
Citation
Applied Energy, v.131, pp 48 - 55
Pages
8
Indexed
SCI
SCIE
SCOPUS
Journal Title
Applied Energy
Volume
131
Start Page
48
End Page
55
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/159022
DOI
10.1016/j.apenergy.2014.05.064
ISSN
0306-2619
1872-9118
Abstract
The insufficient long-term durability of polymer electrolyte membrane fuel cell (PEMFC) stacks has been blocking commercialization of PEMFC technologies. An accelerated degradation test (ADT) is needed to facilitate the PEMFC development process by reducing the testing time. We propose an ADT procedure for a PEMFC stack with the concept of series reliability structure under startup-shutdown cycling testing conditions. The acceleration factor is estimated to fit the degradation paths of individual cells consisting of the PEMFC stack under normal use conditions via the accelerated degradation data of a single cell. We employ a nonparametric regression method to smooth the degradation curves observed from accelerated operating conditions. We illustrate the methodology for estimating the lifetime of the PEMFC stack using the theory of the smallest-order statistics. We propose a three-parameter Weibull distribution in fuel cell technology to fit the failure data of cells in a PEMFC stack.
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COLLEGE OF ENGINEERING (DEPARTMENT OF INDUSTRIAL ENGINEERING)
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