Free open reference implementation of a two-phase PEM fuel cell model

Main Author: Ballantyne, John
Other Authors: Vetter, Roman, Schumacher, Jürgen O.
Format: Dataset
Terbitan: Mendeley , 2018
Subjects:
Online Access: https:/data.mendeley.com/datasets/2msdd4j84c
ctrlnum 0.17632-2msdd4j84c.1
fullrecord <?xml version="1.0"?> <dc><creator>Ballantyne, John</creator><title>Free open reference implementation of a two-phase PEM fuel cell model</title><publisher>Mendeley</publisher><description>In almost 30 years of PEM fuel cell modeling, countless numerical models have been developed in science and industrial applications, almost none of which have been fully disclosed to the public. There is a large need for standardization and establishing a common ground not only in experimental characterization of fuel cells, but also in the development of simulation codes, to prevent each research group from having to start anew from scratch. Here, we publish the first open standalone implementation of a full-blown, steady-state, non-isothermal two-phase model for low-temperature PEM fuel cells. It is based on macro-homogeneous modeling approaches and implements the most essential through-plane transport processes in a five-layer MEA. The focus is on code simplicity and compactness with only a few hundred lines of clearly readable code, providing a starting point for more complex model development. The model is implemented as a standalone MATLAB function, based on MATLAB&#x2019;s standard boundary value problem solver. The default simulation setup reflects wide-spread commercially available MEA materials. Operating conditions recommended for automotive applications by the European Commission are used to establish new fuel cell simulation base data, making our program a valuable candidate for model comparison, validation and benchmarking.</description><subject>Computational Physics</subject><contributor>Vetter, Roman</contributor><contributor>Schumacher, J&#xFC;rgen O.</contributor><type>Other:Dataset</type><identifier>10.17632/2msdd4j84c.1</identifier><rights>BSD 3-Clause ("Revised") License</rights><rights>http://opensource.org/licenses/BSD-3-Clause</rights><relation>https:/data.mendeley.com/datasets/2msdd4j84c</relation><date>2018-08-24T10:08:45Z</date><recordID>0.17632-2msdd4j84c.1</recordID></dc>
format Other:Dataset
Other
author Ballantyne, John
author2 Vetter, Roman
Schumacher, Jürgen O.
title Free open reference implementation of a two-phase PEM fuel cell model
publisher Mendeley
publishDate 2018
topic Computational Physics
url https:/data.mendeley.com/datasets/2msdd4j84c
contents In almost 30 years of PEM fuel cell modeling, countless numerical models have been developed in science and industrial applications, almost none of which have been fully disclosed to the public. There is a large need for standardization and establishing a common ground not only in experimental characterization of fuel cells, but also in the development of simulation codes, to prevent each research group from having to start anew from scratch. Here, we publish the first open standalone implementation of a full-blown, steady-state, non-isothermal two-phase model for low-temperature PEM fuel cells. It is based on macro-homogeneous modeling approaches and implements the most essential through-plane transport processes in a five-layer MEA. The focus is on code simplicity and compactness with only a few hundred lines of clearly readable code, providing a starting point for more complex model development. The model is implemented as a standalone MATLAB function, based on MATLAB’s standard boundary value problem solver. The default simulation setup reflects wide-spread commercially available MEA materials. Operating conditions recommended for automotive applications by the European Commission are used to establish new fuel cell simulation base data, making our program a valuable candidate for model comparison, validation and benchmarking.
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