A comprehensive fractal approach in determination of the effective thermal conductivity of gas diffusion layers in polymer electrolyte membrane fuel cells

The challenges in the fuel cell industry is to produce the efficient thermal and water management for accurate determination of the effectiveness thermal conductivity of gas diffusion layers (GDL) used in polymer electrolyte membrane fuel cells (PEMFC‟s). This is one of the factors affecting the...

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Main Author: Azizan, Mohd Fikri
Format: Thesis
Language:English
English
English
Published: 2017
Subjects:
Online Access:http://eprints.uthm.edu.my/800/1/24p%20MOHD%20FIKRI%20AZIZAN.pdf
http://eprints.uthm.edu.my/800/2/MOHD%20FIKRI%20AZIZAN%20COPYRIGHT%20DECLARATION.pdf
http://eprints.uthm.edu.my/800/3/MOHD%20FIKRI%20AZIZAN%20WATERMARK.pdf
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author Azizan, Mohd Fikri
author_facet Azizan, Mohd Fikri
author_sort Azizan, Mohd Fikri
collection UTHM
description The challenges in the fuel cell industry is to produce the efficient thermal and water management for accurate determination of the effectiveness thermal conductivity of gas diffusion layers (GDL) used in polymer electrolyte membrane fuel cells (PEMFC‟s). This is one of the factors affecting the durability of a fuel cell and need to get a solution to minimize costs and optimize the use of electrodes and cells. The main objectives of this research focus on the capability of the fractal approach for estimation the effectiveness of thermal conductivity of gas diffusion layer. Moreover, on this research also to propose modified fractal equations in determination of the effective thermal conductivity of GDL in PEMFCs based on previous study. Other objectives in this study are demonstrated the thermal conductivity of GDL treated with PTFE contents by using through-plane thermal conductivity experiment method. The through-plane measurement (experiment method) has been used in estimating through-plane thermal conductivity of the GDL. Thermal resistance for GDL also has been investigated under compression pressure 0.1 MPa until 1.0 MPa. In fractal equation, the determination of tortuous and pore fractal dimension can be done by using Scanning Electron Microscopy (SEM) method. Determination of effectiveness thermal conductivity using of fractal equation with slightly modified. In findings, it was found that fractal equation have been modified and measured on the GDL parameter characteristics. It was shown that the value of the effectiveness thermal conductivity of the sample using fractal approach is in good agreement with the experimental value. Finally, all the effective thermal conductivity measured by experimental and fractal approach have been determined with the variant temperature and compression pressure to show the validation result between of this two methods.
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spelling uthm.eprints-8002021-09-01T07:51:28Z http://eprints.uthm.edu.my/800/ A comprehensive fractal approach in determination of the effective thermal conductivity of gas diffusion layers in polymer electrolyte membrane fuel cells Azizan, Mohd Fikri TK2896-2985 Production of electricity by direct energy conversion The challenges in the fuel cell industry is to produce the efficient thermal and water management for accurate determination of the effectiveness thermal conductivity of gas diffusion layers (GDL) used in polymer electrolyte membrane fuel cells (PEMFC‟s). This is one of the factors affecting the durability of a fuel cell and need to get a solution to minimize costs and optimize the use of electrodes and cells. The main objectives of this research focus on the capability of the fractal approach for estimation the effectiveness of thermal conductivity of gas diffusion layer. Moreover, on this research also to propose modified fractal equations in determination of the effective thermal conductivity of GDL in PEMFCs based on previous study. Other objectives in this study are demonstrated the thermal conductivity of GDL treated with PTFE contents by using through-plane thermal conductivity experiment method. The through-plane measurement (experiment method) has been used in estimating through-plane thermal conductivity of the GDL. Thermal resistance for GDL also has been investigated under compression pressure 0.1 MPa until 1.0 MPa. In fractal equation, the determination of tortuous and pore fractal dimension can be done by using Scanning Electron Microscopy (SEM) method. Determination of effectiveness thermal conductivity using of fractal equation with slightly modified. In findings, it was found that fractal equation have been modified and measured on the GDL parameter characteristics. It was shown that the value of the effectiveness thermal conductivity of the sample using fractal approach is in good agreement with the experimental value. Finally, all the effective thermal conductivity measured by experimental and fractal approach have been determined with the variant temperature and compression pressure to show the validation result between of this two methods. 2017-06 Thesis NonPeerReviewed text en http://eprints.uthm.edu.my/800/1/24p%20MOHD%20FIKRI%20AZIZAN.pdf text en http://eprints.uthm.edu.my/800/2/MOHD%20FIKRI%20AZIZAN%20COPYRIGHT%20DECLARATION.pdf text en http://eprints.uthm.edu.my/800/3/MOHD%20FIKRI%20AZIZAN%20WATERMARK.pdf Azizan, Mohd Fikri (2017) A comprehensive fractal approach in determination of the effective thermal conductivity of gas diffusion layers in polymer electrolyte membrane fuel cells. Masters thesis, Universiti Tun Hussein Onn Malaysia.
spellingShingle TK2896-2985 Production of electricity by direct energy conversion
Azizan, Mohd Fikri
A comprehensive fractal approach in determination of the effective thermal conductivity of gas diffusion layers in polymer electrolyte membrane fuel cells
title A comprehensive fractal approach in determination of the effective thermal conductivity of gas diffusion layers in polymer electrolyte membrane fuel cells
title_full A comprehensive fractal approach in determination of the effective thermal conductivity of gas diffusion layers in polymer electrolyte membrane fuel cells
title_fullStr A comprehensive fractal approach in determination of the effective thermal conductivity of gas diffusion layers in polymer electrolyte membrane fuel cells
title_full_unstemmed A comprehensive fractal approach in determination of the effective thermal conductivity of gas diffusion layers in polymer electrolyte membrane fuel cells
title_short A comprehensive fractal approach in determination of the effective thermal conductivity of gas diffusion layers in polymer electrolyte membrane fuel cells
title_sort comprehensive fractal approach in determination of the effective thermal conductivity of gas diffusion layers in polymer electrolyte membrane fuel cells
topic TK2896-2985 Production of electricity by direct energy conversion
url http://eprints.uthm.edu.my/800/1/24p%20MOHD%20FIKRI%20AZIZAN.pdf
http://eprints.uthm.edu.my/800/2/MOHD%20FIKRI%20AZIZAN%20COPYRIGHT%20DECLARATION.pdf
http://eprints.uthm.edu.my/800/3/MOHD%20FIKRI%20AZIZAN%20WATERMARK.pdf
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