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Title: An Integrated Approach to Modeling and Mitigating SOFC Failure

Abstract

The specific objectives of this project were: (1) To develop and demonstrate the feasibility of an integrated predictive computer-based tool for fuel cell design and reliability/durability analysis, (2) To generate new scientific and engineering knowledge to better enable SECA Industry Teams to develop reliable, low-cost solid-oxide fuel cell power generation systems, (3) To create technology breakthroughs to address technical risks and barriers that currently limit achievement of the SECA performance and cost goals for solidoxide fuel cell systems, and (4) To transfer new science and technology developed in the project to the SECA Industry Teams. Through this three-year project, the Georgia Tech's team has demonstrated the feasibility of the solution proposed and the merits of the scientific path of inquiry, and has developed the technology to a sufficient level such that it can be utilized by the SECA Industry Teams. This report summarizes the project's results and achievements.

Authors:
; ;
Publication Date:
Research Org.:
Georgia Tech Research Corp
Sponsoring Org.:
USDOE
OSTI Identifier:
898813
DOE Contract Number:  
FC26-02NT41571
Resource Type:
Technical Report
Country of Publication:
United States
Language:
English
Subject:
30 DIRECT ENERGY CONVERSION; DESIGN; FUEL CELLS; PERFORMANCE; POWER GENERATION; SIMULATION; SOLID OXIDE FUEL CELLS

Citation Formats

Jianmin Qu, Andrei Fedorov, and Comas Haynes. An Integrated Approach to Modeling and Mitigating SOFC Failure. United States: N. p., 2006. Web. doi:10.2172/898813.
Jianmin Qu, Andrei Fedorov, & Comas Haynes. An Integrated Approach to Modeling and Mitigating SOFC Failure. United States. doi:10.2172/898813.
Jianmin Qu, Andrei Fedorov, and Comas Haynes. Mon . "An Integrated Approach to Modeling and Mitigating SOFC Failure". United States. doi:10.2172/898813. https://www.osti.gov/servlets/purl/898813.
@article{osti_898813,
title = {An Integrated Approach to Modeling and Mitigating SOFC Failure},
author = {Jianmin Qu and Andrei Fedorov and Comas Haynes},
abstractNote = {The specific objectives of this project were: (1) To develop and demonstrate the feasibility of an integrated predictive computer-based tool for fuel cell design and reliability/durability analysis, (2) To generate new scientific and engineering knowledge to better enable SECA Industry Teams to develop reliable, low-cost solid-oxide fuel cell power generation systems, (3) To create technology breakthroughs to address technical risks and barriers that currently limit achievement of the SECA performance and cost goals for solidoxide fuel cell systems, and (4) To transfer new science and technology developed in the project to the SECA Industry Teams. Through this three-year project, the Georgia Tech's team has demonstrated the feasibility of the solution proposed and the merits of the scientific path of inquiry, and has developed the technology to a sufficient level such that it can be utilized by the SECA Industry Teams. This report summarizes the project's results and achievements.},
doi = {10.2172/898813},
journal = {},
number = ,
volume = ,
place = {United States},
year = {2006},
month = {5}
}